Chapter 12: Acellular Agents: Viruses, Viroids and Prions

Size: px
Start display at page:

Download "Chapter 12: Acellular Agents: Viruses, Viroids and Prions"

Transcription

1 Chapter 12: Acellular Agents: Viruses, Viroids and Prions Viruses Viruses are acellular infectious agents that are much smaller than bacteria and are usually measured in nanometers (Figure 12.1). They have either DNA or RNA genomes and never have both types of nucleic acids within the virus capsid. Viruses cause many infections of humans, animals, plants, and bacteria and cause most of the diseases that plague the industrialized world (HIV, SARS, herpes, polio). Most viruses infect only certain host cells and can be said to be species specific. Some viruses may be so specific they only infect a certain cell type (ex. HIV infect human T lymphocytes). There are plenty of viruses however that cross species barriers and can infect multiple hosts, these are referred to as generalists (ex. Influenza virus and Rabies virus). Figure Comparative sizes of viruses to E. coli, which is approximately 2 microns long. There is some debate on whether viruses are living organisms or not. Some believe they are the least complex living entity, others that they are complex pathogenic chemicals, which is supported by the numerous non-living characteristics. The arguments for both sides are outlined below.

2 Living Characteristics Can Reproduce (only in living cells) Can Mutate Non-Living Characteristics Acellular (no cytoplasm or organelles) Do not grow or respond to the environment Have ability to take control of host cell Have DNA or RNA never both Cannot reproduce independently Do not metabolize chemicals for energy Have an intracellular and an extracellular state Recruit the cells metabolic pathways to increase numbers Animal Viruses Virus Structure: Viruses have two states: the extracellular state and the intracellular state. In the extracellular state the virus is called a virion. The virion can either be characterized as Naked or Enveloped. A Naked virion is made up of a nucleic acid genome surrounded by a protein "coat" called the capsid. The genome + the capsid together make up the nucleocapsid. The viral genome may be made of single-stranded DNA (ssdna), double-stranded DNA (dsdna), ssrna or dsrna. The capsid is composed of smaller protein subunits, the capsomeres and can vary in structure: helical (tube/rod shaped), polyhedral, or complex, meaning the shape varies or has multiple parts. Enveloped virions have a phospholipid bilayer that surrounds the capsid. The envelope is often derived from the host cell it is infecting and provides an extra layer of protection (Figure 12.2). The outermost layer of the virus (the envelope if it enveloped, or the capsid if it is naked) protects the viral genome and contains attachment proteins, also known as "spikes". These proteins bind to receptors on the cells of the virus host and are responsible for virus-host specificity. Viruses are classified based on the shape of their capsid, they type of nucleic acid they have, the presence/absence of an envelope and their size. In the intracellular state of the virus exists solely as nucleic acid. Once the virus infects the cell the capsid is degraded and the virus will begin the process to take over the internal cell components.

3 Figure Enveloped virus structure. A naked virus is similar but lacks the envelope. Replication/life cycle of Animal Viruses Viral replication is dependent on host cell organelles and enzymes therefore they must invade the cell in order to replicate. The steps for viral replication are outlined below (Figure 12.3): 1. Recognition and Attachment: capsid or envelope proteins recognize host cell receptors and the virus attaches to the cell 2. Entry: The animal virus can enter by fusion with cell membrane (enveloped only) or endocytosis (naked and enveloped) 3. Synthesis: DNA viruses replicate in the nucleus and viral proteins are translated in the cytoplasm. 4. Assembly: Viral proteins are assembled along with replicated viral DNA in the cytoplasm. 5. Release: The release mechanisms vary depending on the virus the 3 basic release mechanisms are budding, exocytosis, or lysis of the host cell. Because of the way virus particles are made, one cell can make hundreds to thousands of copies of a single virus.

4 Figure Outline of animal virus replication. Influenza Virus Replication Animantion : Latency and Latent Infections vs. Acute Infections The capability of enveloped viruses to leave the host cell by budding and not killing the host cell allows some viruses to cause latent infections. Latency occurs when the virus is present in the cell but dormant for long periods and then becomes active, going through a cycle of viral replication and producing symptoms in the host. Some latent viruses incorporate their viral DNA into the host cell DNA, causing the entire host cell progeny to become infected, while other latent viruses keep their genome separate from that of the host. Examples of latent infections include herpes (both genital and oral), in which the virus can be dormant for months or years and become active for a short time, producing symptoms, and chickenpox, in which a person contracts the virus (usually as a child) and is symptom free for decades before the virus becomes active and symptoms appear as shingles. People who develop latent infections do not develop immunity and can experience symptoms again and again. Viruses that do not become latent cause acute infections. Acute infections are characterized by sudden onset symptoms that are short in duration with active replication of the virus by the host cell. Infections by these types of viruses usually result in long lasting future immunity for the host. Examples of acute infections include, the cold, influenza and norovirus.

5 The Role of Viruses in Cancer Animal genes contain sequences of DNA called protooncogenes (literally pre-cancer genes). These protooncogenes are bound by repressor proteins, which effectively keep the genes off (in the pre-cancer state). Viruses contribute to the development of cancer in a two-step fashion: they insert promoters in front of the protooncogene (remember, in order for a gene to be transcribed, mrna binds to the promoter), then, they disrupt or eliminate the gene for the repressor protein. Without the repressor, the protooncogene can be turned "on", thereby becoming an oncogene. Viruses cause 20 25% of human cancers Some viruses carry copies of oncogenes as part of their genomes Some viruses promote oncogenes already present in host Some viruses interfere with tumor repression Specific viruses are known to cause ~15% of human cancers Burkitt's lymphoma Hodgkin's disease Kaposi's sarcoma Cervical cancer Environmental factors often combine with viruses to contribute to the activation of oncogenes. Examples include: Ultraviolet light Radiation Carcinogens Retroviruses Retroviruses are viruses that have RNA as their genome. This RNA can be used directly as mrna to initiate protein synthesis and make viral capsids and other viral components. The RNA of retroviruses is transcribed into DNA by the viral enzyme, reverse transcriptase. This viral DNA can then be incorporated into the host cell genome. This makes the virus a permanent part of the host cell and any host cell progeny. This splicing may also disrupt repressor genes and contribute to the development of cancer within the host. An example of a prominent retrovirus is Human Immunodeficiency Virus (HIV), the causative agent of AIDS.

6 Evolution of Animal Viruses Animal viruses evolve via two mechanisms: antigenic drift and antigenic shift. Before we discuss these in detail, let's take a closer look at the influenza virus, which we will use as a model for studying drift and shift: The two major types of influenza are Type A and Type B. Both types have envelopes and 8 segments of RNA as their genome. Both types also have 2 major types of spikes on their envelopes: Hemagglutinin: allows the virus to bind to receptors on pulmonary epithelial cells and facilitates endocytosis by those cells, there are 16 varients of hemagglutinin Neuraminidase: helps the virus penetrate the lung by hydrolyzing mucus in the lungs, and also helps facilitate the release of new virus particles from infected host cells, there are 9 varients of neuraminidase Influenza viral strains are named based on the varients of hemagglutinin and neuraminidase they have. For example, the 2009 flu epidemic was caused by H1N1. The so-called "Avian Flu" is H5N1. Antigenic drift occurs when point mutations occur in the RNA coding for the neuraminidase and hemagglutinin. These point mututions change the virus just enough so that the immune system of a person infected with it would not recognize and remember the virus. The virus would be seen as something new upon re-exposure, and would cause illness while the immune system goes through a primary immune response. Antigenic Shift is a larger change in the genome, usually due to the mixing of genetic information from two strains of virus that are infecting a host simultaneously. In the case of the influenza virus, this may involve the infection of an intermediate host, such as a pig or a bird. Antigenic shift leads to the creation of entirely new strain of virus. Replication/life cycle of Bacteriophages A bacteriophage (or phage for short) is a virus that infects bacteria. Felix d Herelle coined the term bacteriophage, meaning bacteria eater in There are many kinds of bacteriophage, each infecting a specific type of bacteria. Bacteriophages such as the T-even phage used in this exercise have a complex structure comprised of a polyhedral head called the capsid that contains DNA. These phages first attach to the bacterial cell and then inject their DNA into the bacterium. The tail sheath of the phage contracts and drives the tail core through the bacterial cell wall (sort of like a hypodermic syringe injection). There are two outcomes of this injection, depending on whether the phage is lytic or lysogenic. The cycles are outlined below: Lytic replication

7 Replication cycle results in lysis and death of host cell about 30 minutes after infection. Lysis releases approximately progeny. Lysogenic replication (Figure 12.4) Modified lytic cycle where the viral genome is incorporated into the host cell genome. The bacteria will reproduce for many generations until the virus is induced. Induction is the process in which the viral genome is cut out of the host cell genome and enters into the lytic cycle. Induction can be caused by numerous environmental factors such as DNA damaging chemicals, UV light, and other sub optimal conditions. Bacteria that contain the DNA of the phage usually cannot be re-infected or lysed by the same type of phage. Basic stages of lytic replication cycle 1. Recognition and Attachment: Bacteriophage spikes recognize complementary receptors on bacteria surface. 2. Entry: Injection of viral genome 3. Chromosome degraded: virally coded enzymes degrade the host chromosome. 4. Synthesis: Replication of viral genome and translation of viral proteins 5. Assembly: Note: the gene transfer mechanism of transduction relies on mistakes when the virus is assembling. Short fragments of bacterial chromosome or plasmids may be packaged inside the viral capsid. Once released the bacteriophage will infect another bacteria with the bacterial DNA. 6. Release: is by lysis of the cell resulting in cell death. Figure Image showing lysogenic cycle and how induction causes the lytic cycle. Note: the color of the viral genome is red and the host chromosome is in blue. Notice how during assembly some of the phage particles have blue bacterial DNA in the capsid. This is how the gene transfer mechanism of transduction works.

8 It is important to study phage and learn to manipulate them for the following reasons. 1. Animal viruses, including human pathogens, are grown in tissue culture cells in the same fashion as phage on bacteria. Tissue cultures are animal cells grown in bottles or on plates. The animal virus can form plaques by causing cells to degenerate or die. It is convenient to learn viral techniques using bacteriophage, because human pathogenic viral manipulation in lab could be disastrous if you used bad aseptic technique. 2. Phages are used in recombinant DNA experiments and are also useful in studying the genetics of bacteria. They are useful tools for transfer of genes and pieces of DNA from cell to cell. 3. Phages are used to identify certain strains of bacteria, because one type of phage will only infect one or a few specific species or strains of bacteria. 4. Lysogeny has served as a model for viruses that insert their DNA into animal cells. The life cycle of lysogenic phage resembles that of retroviruses (e.g. HIV). Lysogenic conversion occurs when the genes carried by the phage alter the phenotype of the bacterial cell in some way. The toxins produced by C. diphtheriae and C. botulinum are the result of lysogenic conversion. Culturing Viruses Culturing of viruses is problematic because they are obligate intracellular parasites: they must be grown in their host cells. In the case of bacteriophage, a plaque assay can be done (Lab 12.1). The phage particles are mixed with bacterial cells then mixed into warm, molten agar which is then poured into Petri plates and allowed to solidify. Mixing the bacteria into the agar this way should create a lawn. Wherever the phage have infected and killed bacterial cells, holes called plaques occur in the lawn. Plaques contain high numbers of bacteriophage which can be cultured again in this manner. Human and animal viruses can be cultured in cell or tissue culture. First, the host cells must be grown in tissue culture media. Sometimes, cell culture lines are available commercially, but some types of cells are not and they must be harvested fresh from the host organisms. I worked with hepatocytes, and they had to be cultured fresh each time. This meant harvesting liver cells from mice and rats each time I needed to perform an experiment. Cell culture is also prone to contamination because the media and much of the equipment is heat-sensitive and cannot be autoclaved. After establishing a culture of host cells, the virus is introduced to the culture and allowed to infect it. Animal viruses can also be cultured in embryonated chicken eggs (Figure 12.5). Chicken eggs are free from microbes and contain nourishing yolk to provide energy for viral replication.

9 Figure Sites of injection for culturing viruses. Other Parasitic Particles: Viroids & Prions Viroids Viroids are extremely small, circular pieces of RNA that are infectious and pathogenic in plants, although little is known about how they infect and cause disease in plants. They are similar to RNA viruses, but lack capsids. It is not known if viroids infect animals or humans. Prions The term "prion" is short for proteinaceousinfectious agent (if you rearrange the letters a bit). Prions are misfolded PrP proteins that can induce other proteins to change their shape to become prion proteins. PrP proteins are made by all mammals, prion PrP proteins convert normal PrP into prion PrP. Prions in a sense sort of act like an enzyme slowly converting good proteins into bad proteins.

10 Prions affect the brain matter causing spongiform encephalopathies. These result in always fatal neurological degeneration, fibril deposits and loss of brain matter. On examination, the brain appears to have large vacuoles in it, giving it the characteristic spongy appearance. There is still a lot that is unknown regarding prion diseases and their transmission. As of now, there are no diagnostic tests for them beyond autopsy, and there are no treatments. It is known that prions can be transmitted by ingesting contaminated neural tissue or by receiving transplanted tissue from a donor who had a prion disease, but it is not known if prions can be transmitted in any other way. Prion disease include mad cow (cattle), scrapie (sheep), varient Creutzfeld-Jakob syndrome (humans) and chronic wasting disease (deer and elk). In order to destroy prions, they must be autoclaved in 1N NaOH or incinerated. The mad cow outbreak in Great Britain in the mid-1980s was a result of two disturbing practices: 1. using the carcasses of dead cattle to boost protein levels in cattle feed and 2. not rendering the carcasses at high enough temperatures to destroy prions prior to adding them to the feed. The lower temperature was adopted as a way to save on energy costs. Because we do not fully understand the transmission of prions, people from England and Americans who visited/work in England during this time period are not allowed to donate blood in the U.S.

Chapter13 Characterizing and Classifying Viruses, Viroids, and Prions

Chapter13 Characterizing and Classifying Viruses, Viroids, and Prions Chapter13 Characterizing and Classifying Viruses, Viroids, and Prions 11/20/2017 MDufilho 1 Characteristics of Viruses Viruses Minuscule, acellular, infectious agent having either DNA or RNA Cause infections

More information

Viruses defined acellular organisms genomes nucleic acid replicate inside host cells host metabolic machinery ribosomes

Viruses defined acellular organisms genomes nucleic acid replicate inside host cells host metabolic machinery ribosomes The Viruses Viruses Viruses may be defined as acellular organisms whose genomes consist of nucleic acid, obligately replicate inside host cells using host metabolic machinery and ribosomes to form a pool

More information

Characterizing and Classifying Viruses, Viroids, and Prions

Characterizing and Classifying Viruses, Viroids, and Prions PowerPoint Lecture Presentations prepared by Mindy Miller-Kittrell, North Carolina State University C H A P T E R 13 Characterizing and Classifying Viruses, Viroids, and Prions SLOs What are the Characteristics

More information

Chapter 19: Viruses. 1. Viral Structure & Reproduction. What exactly is a Virus? 11/7/ Viral Structure & Reproduction. 2.

Chapter 19: Viruses. 1. Viral Structure & Reproduction. What exactly is a Virus? 11/7/ Viral Structure & Reproduction. 2. Chapter 19: Viruses 1. Viral Structure & Reproduction 2. Bacteriophages 3. Animal Viruses 4. Viroids & Prions 1. Viral Structure & Reproduction Chapter Reading pp. 393-396 What exactly is a Virus? Viruses

More information

Chapter 19: Viruses. 1. Viral Structure & Reproduction. 2. Bacteriophages. 3. Animal Viruses. 4. Viroids & Prions

Chapter 19: Viruses. 1. Viral Structure & Reproduction. 2. Bacteriophages. 3. Animal Viruses. 4. Viroids & Prions Chapter 19: Viruses 1. Viral Structure & Reproduction 2. Bacteriophages 3. Animal Viruses 4. Viroids & Prions 1. Viral Structure & Reproduction Chapter Reading pp. 393-396 What exactly is a Virus? Viruses

More information

Characterizing and Classifying Viruses, Viroids, and Prions

Characterizing and Classifying Viruses, Viroids, and Prions PowerPoint Lecture Presentations prepared by Mindy Miller-Kittrell, North Carolina State University Modified by Ossi Turunen, Aalto University C H A P T E R 13 Characterizing and Classifying Viruses, Viroids,

More information

Lecture 5 (Ch6) - Viruses. Virus Characteristics. Viral Host Range

Lecture 5 (Ch6) - Viruses. Virus Characteristics. Viral Host Range Lecture 5 (Ch6) - Viruses Topics Characteristics Structure/Classification Multiplication Cultivation and replication Non-viral infectious agents Treatment 1 Virus Characteristics obligate intracellular

More information

Introduction to viruses. BIO 370 Ramos

Introduction to viruses. BIO 370 Ramos Introduction to viruses BIO 370 Ramos 1 2 General Structure of Viruses Size range most

More information

Chapter 6- An Introduction to Viruses*

Chapter 6- An Introduction to Viruses* Chapter 6- An Introduction to Viruses* *Lecture notes are to be used as a study guide only and do not represent the comprehensive information you will need to know for the exams. 6.1 Overview of Viruses

More information

History of Virology. Russian Bacteriologist Dimitri Iwanowski TMD tobacco mosaic disease TMV isolated and purified

History of Virology. Russian Bacteriologist Dimitri Iwanowski TMD tobacco mosaic disease TMV isolated and purified Viruses & Prions Viruses Virus miniscule, acellular, infectious agent having one or several pieces of either DNA or RNA No cytoplasmic membrane, cytosol, organelles Cannot carry out any metabolic pathway

More information

Chapter 18. Viral Genetics. AP Biology

Chapter 18. Viral Genetics. AP Biology Chapter 18. Viral Genetics 2003-2004 1 A sense of size Comparing eukaryote bacterium virus 2 What is a virus? Is it alive? DNA or RNA enclosed in a protein coat Viruses are not cells Extremely tiny electron

More information

11/15/2011. Outline. Structural Features and Characteristics. The Good the Bad and the Ugly. Viral Genomes. Structural Features and Characteristics

11/15/2011. Outline. Structural Features and Characteristics. The Good the Bad and the Ugly. Viral Genomes. Structural Features and Characteristics Chapter 19 - Viruses Outline I. Viruses A. Structure of viruses B. Common Characteristics of Viruses C. Viral replication D. HIV II. Prions The Good the Bad and the Ugly Viruses fit into the bad category

More information

Overview: Chapter 19 Viruses: A Borrowed Life

Overview: Chapter 19 Viruses: A Borrowed Life Overview: Chapter 19 Viruses: A Borrowed Life Viruses called bacteriophages can infect and set in motion a genetic takeover of bacteria, such as Escherichia coli Viruses lead a kind of borrowed life between

More information

Characterizing and Classifying Viruses, Viroids, and Prions

Characterizing and Classifying Viruses, Viroids, and Prions Characterizing and Classifying Viruses, Viroids, and Prions CHAPTER SUMMARY Viruses, viroids, and prions are acellular (noncellular) disease-causing agents that lack cell structure and cannot metabolize,

More information

Chapter 19: The Genetics of Viruses and Bacteria

Chapter 19: The Genetics of Viruses and Bacteria Chapter 19: The Genetics of Viruses and Bacteria What is Microbiology? Microbiology is the science that studies microorganisms = living things that are too small to be seen with the naked eye Microorganisms

More information

Lecture 2: Virology. I. Background

Lecture 2: Virology. I. Background Lecture 2: Virology I. Background A. Properties 1. Simple biological systems a. Aggregates of nucleic acids and protein 2. Non-living a. Cannot reproduce or carry out metabolic activities outside of a

More information

AP Biology. Viral diseases Polio. Chapter 18. Smallpox. Influenza: 1918 epidemic. Emerging viruses. A sense of size

AP Biology. Viral diseases Polio. Chapter 18. Smallpox. Influenza: 1918 epidemic. Emerging viruses. A sense of size Hepatitis Viral diseases Polio Chapter 18. Measles Viral Genetics Influenza: 1918 epidemic 30-40 million deaths world-wide Chicken pox Smallpox Eradicated in 1976 vaccinations ceased in 1980 at risk population?

More information

Nucleic acid: singled stranded, double stranded, RNA, or DNA, linear or circular. Capsid: protein coat that is most of the mass of the virus.

Nucleic acid: singled stranded, double stranded, RNA, or DNA, linear or circular. Capsid: protein coat that is most of the mass of the virus. Viruses General Characteristics of Viruses 1. Depending on view may be regarded as exceptionally complex aggregates of nonliving chemicals or as exceptionally simple living microbes. 2. Contain a single

More information

19/06/2013. Viruses are not organisms (do not belong to any kingdom). Viruses are not made of cells, have no cytoplasm, and no membranes.

19/06/2013. Viruses are not organisms (do not belong to any kingdom). Viruses are not made of cells, have no cytoplasm, and no membranes. VIRUSES Many diseases of plants and animals are caused by bacteria or viruses that invade the body. Bacteria and viruses are NOT similar kinds of micro-organisms. Bacteria are classified as living organisms,

More information

Microbiology Chapter 7 Viruses

Microbiology Chapter 7 Viruses Microbiology Chapter 7 Viruses 7:1 Viral Structure and Classification VIRUS: a biological particle composed of genetic material (DNA or RNA) encased in a protein coat CAPSID: protein coat surrounding a

More information

Biology 350: Microbial Diversity

Biology 350: Microbial Diversity Biology 350: Microbial Diversity Strange Invaders: Viruses, viroids, and prions. Lecture #27 7 November 2007-1- Notice handouts and announcements for today: Outline and study questions A 1999 paper discussing

More information

Viruses. Rotavirus (causes stomach flu) HIV virus

Viruses. Rotavirus (causes stomach flu) HIV virus Viruses Rotavirus (causes stomach flu) HIV virus What is a virus? A virus is a microscopic, infectious agent that may infect any type of living cell. Viruses must infect living cells in order to make more

More information

Some living things are made of ONE cell, and are called. Other organisms are composed of many cells, and are called. (SEE PAGE 6)

Some living things are made of ONE cell, and are called. Other organisms are composed of many cells, and are called. (SEE PAGE 6) Section: 1.1 Question of the Day: Name: Review of Old Information: N/A New Information: We tend to only think of animals as living. However, there is a great diversity of organisms that we consider living

More information

Viruses. Objectives At the end of this sub section students should be able to:

Viruses. Objectives At the end of this sub section students should be able to: Name: 3.5 Responses to Stimuli Objectives At the end of this sub section students should be able to: 3.5.4 Viruses 1. Explain the problem of defining what a virus is - living or non-living? 2. show you

More information

Virology Introduction. Definitions. Introduction. Structure of virus. Virus transmission. Classification of virus. DNA Virus. RNA Virus. Treatment.

Virology Introduction. Definitions. Introduction. Structure of virus. Virus transmission. Classification of virus. DNA Virus. RNA Virus. Treatment. DEVH Virology Introduction Definitions. Introduction. Structure of virus. Virus transmission. Classification of virus. DNA Virus. RNA Virus. Treatment. Definitions Virology: The science which study the

More information

1. Virus 2. Capsid 3. Envelope

1. Virus 2. Capsid 3. Envelope VIRUSES BIOLOGY II VOCABULARY- VIRUSES (22 Words) 1. Virus 2. Capsid 3. Envelope 4. Provirus 5. Retrovirus 6. Reverse transcriptase 7. Bacteriophage 8. Lytic Cycle 9. Virulent 10. Lysis 11. Lysogenic Cycle

More information

Chapter 13 Viruses, Viroids, and Prions. Biology 1009 Microbiology Johnson-Summer 2003

Chapter 13 Viruses, Viroids, and Prions. Biology 1009 Microbiology Johnson-Summer 2003 Chapter 13 Viruses, Viroids, and Prions Biology 1009 Microbiology Johnson-Summer 2003 Viruses Virology-study of viruses Characteristics: acellular obligate intracellular parasites no ribosomes or means

More information

Date. Student Name. Prompt: This passage is called Characteristics of Viruses. It is about viruses.

Date. Student Name. Prompt: This passage is called Characteristics of Viruses. It is about viruses. Student Name Characteristics of Viruses--Part I Level High School - Science Date _ Prompt: This passage is called Characteristics of Viruses. It is about viruses. Similarities and Differences Between Viruses

More information

Warts are a skin virus!

Warts are a skin virus! Viruses Warts are a skin virus! Herpes mouth virus: Other Viral Diseases Measles Polio Smallpox Influenza Hepatitis B Virus Viruses & Cancer Human Papilloma Virus HPV Tree Man - HPV Is a Virus a Living

More information

Chapter 13B: Animal Viruses

Chapter 13B: Animal Viruses Chapter 13B: Animal Viruses 1. Overview of Animal Viruses 2. DNA Viruses 3. RNA Viruses 4. Prions 1. Overview of Animal Viruses Life Cycle of Animal Viruses The basic life cycle stages of animal viruses

More information

Part I. Content: History of Viruses. General properties of viruses. Viral structure. Viral classifications. Virus-like agents.

Part I. Content: History of Viruses. General properties of viruses. Viral structure. Viral classifications. Virus-like agents. Viruses Part I Content: History of Viruses. General properties of viruses. Viral structure. Viral classifications. Virus-like agents. History Through the 1800s, many scientists discovered that something

More information

STRUCTURE, GENERAL CHARACTERISTICS AND REPRODUCTION OF VIRUSES

STRUCTURE, GENERAL CHARACTERISTICS AND REPRODUCTION OF VIRUSES STRUCTURE, GENERAL CHARACTERISTICS AND REPRODUCTION OF VIRUSES Introduction Viruses are noncellular genetic elements that use a living cell for their replication and have an extracellular state. Viruses

More information

Size nm m m

Size nm m m 1 Viral size and organization Size 20-250nm 0.000000002m-0.000000025m Virion structure Capsid Core Acellular obligate intracellular parasites Lack organelles, metabolic activities, and reproduction Replicated

More information

The Zombies of the Scientific Community Viruses and Other Acellular Infectious Agents. Acellular Agents

The Zombies of the Scientific Community Viruses and Other Acellular Infectious Agents. Acellular Agents viruses protein and nucleic acid viroids RNA virusoids RNA prions proteins The Zombies of the Scientific Community Viruses and Other Acellular Infectious Agents Acellular Agents Viruses major cause of

More information

Viruses. Picture from:

Viruses. Picture from: Viruses Understand the structure of bacteriophages & human immunodeficiency virus (HIV) Appreciate that viruses replicate in host cells (thereby destroying them) Picture from: http://eands.caltech.edu/articles/lxvii1/viruses.html

More information

Viruses. Non-cellular organisms. Premedical - Biology

Viruses. Non-cellular organisms. Premedical - Biology Viruses Non-cellular organisms Premedical - Biology Size the smallest 20 nm and more Non-cellular: viruses are infectious particles plant, animal, bacterial = bacteriophages virion = nucleic acid + protein

More information

Virus Basics. General Characteristics of Viruses. Chapter 13 & 14. Non-living entities. Can infect organisms of every domain

Virus Basics. General Characteristics of Viruses. Chapter 13 & 14. Non-living entities. Can infect organisms of every domain Virus Basics Chapter 13 & 14 General Characteristics of Viruses Non-living entities Not considered organisms Can infect organisms of every domain All life-forms Commonly referred to by organism they infect

More information

Viruses and Prions (Chapter 13) Lecture Materials for Amy Warenda Czura, Ph.D. Suffolk County Community College Eastern Campus

Viruses and Prions (Chapter 13) Lecture Materials for Amy Warenda Czura, Ph.D. Suffolk County Community College Eastern Campus Viruses and Prions (Chapter 13) Lecture Materials for Amy Warenda Czura, Ph.D. Suffolk County Community College Eastern Campus Primary Source for figures and content: Tortora, G.J. Microbiology An Introduction

More information

VIRUSES. 1. Describe the structure of a virus by completing the following chart.

VIRUSES. 1. Describe the structure of a virus by completing the following chart. AP BIOLOGY MOLECULAR GENETICS ACTIVITY #3 NAME DATE HOUR VIRUSES 1. Describe the structure of a virus by completing the following chart. Viral Part Description of Part 2. Some viruses have an envelope

More information

2.1 VIRUSES. 2.1 Learning Goals

2.1 VIRUSES. 2.1 Learning Goals 2.1 VIRUSES 2.1 Learning Goals To understand the structure, function, and how Viruses replicate To understand the difference between Viruses to Prokaryotes and Eukaryotes; namely that viruses are not classified

More information

19 Viruses BIOLOGY. Outline. Structural Features and Characteristics. The Good the Bad and the Ugly. Structural Features and Characteristics

19 Viruses BIOLOGY. Outline. Structural Features and Characteristics. The Good the Bad and the Ugly. Structural Features and Characteristics 9 Viruses CAMPBELL BIOLOGY TENTH EDITION Reece Urry Cain Wasserman Minorsky Jackson Outline I. Viruses A. Structure of viruses B. Common Characteristics of Viruses C. Viral replication D. HIV Lecture Presentation

More information

Viruses. An Illustrated Guide to Viral Life Cycles to Accompany Lecture. By Noel Ways

Viruses. An Illustrated Guide to Viral Life Cycles to Accompany Lecture. By Noel Ways Viruses An Illustrated Guide to Viral Life Cycles to Accompany Lecture By Noel Ways Viral Life Cycle Step #1, Adhesion: During adhesion, specific receptors for specific molecules on potential host cell

More information

Virus Basics. General Characteristics of Viruses 5/9/2011. General Characteristics of Viruses. Chapter 13 & 14. Non-living entities

Virus Basics. General Characteristics of Viruses 5/9/2011. General Characteristics of Viruses. Chapter 13 & 14. Non-living entities Virus Basics Chapter 13 & 14 General Characteristics of Viruses Non-living entities Not considered organisms Can infect organisms of every domain All life-formsf Commonly referred to by organism they infect

More information

Lecture Guide Viruses (CH13)

Lecture Guide Viruses (CH13) Lecture Guide Viruses (CH13) This chapter is on the general characteristics of viruses and focuses on both bacterial and animal viruses and their life cycles. Let s start with a quick look at the history

More information

Viral reproductive cycle

Viral reproductive cycle Lecture 29: Viruses Lecture outline 11/11/05 Types of viruses Bacteriophage Lytic and lysogenic life cycles viruses viruses Influenza Prions Mad cow disease 0.5 µm Figure 18.4 Viral structure of capsid

More information

BIOLOGY. Viruses CAMPBELL. Reece Urry Cain Wasserman Minorsky Jackson. Lecture Presentation by Nicole Tunbridge and Kathleen Fitzpatrick TENTH EDITION

BIOLOGY. Viruses CAMPBELL. Reece Urry Cain Wasserman Minorsky Jackson. Lecture Presentation by Nicole Tunbridge and Kathleen Fitzpatrick TENTH EDITION CAMPBELL BIOLOGY TENTH EDITION Reece Urry Cain Wasserman Minorsky Jackson 19 Viruses Lecture Presentation by Nicole Tunbridge and Kathleen Fitzpatrick Figure 19.1 Are the viruses (red) budding from this

More information

18.2 Viruses and Prions

18.2 Viruses and Prions KEY CONCEPT Infections can be caused in several ways. Viruses, bacteria, viroids, and prions can all cause infection. Any disease-causing agent is called a pathogen. 1 nanometer (nm) = one billionth of

More information

Ch. 19 Viruses & Bacteria: What Is a Virus?

Ch. 19 Viruses & Bacteria: What Is a Virus? Ch. 19 Viruses & Bacteria: What Is a Virus? A virus is an invective agent consisting of a nucleic acid in a protein coat, able to multiply only within the living cells of a host. A bacteriophage ( bacteria

More information

MONTGOMERY COUNTY COMMUNITY COLLEGE CHAPTER 13: VIRUSES. 1. Obligate intracellular parasites that multiply in living host cells

MONTGOMERY COUNTY COMMUNITY COLLEGE CHAPTER 13: VIRUSES. 1. Obligate intracellular parasites that multiply in living host cells MONTGOMERY COUNTY COMMUNITY COLLEGE CHAPTER 13: VIRUSES I. CHARACTERISTICS OF VIRUSES A. General Characteristics 1. Obligate intracellular parasites that multiply in living host cells 2. Contain a single

More information

AP Biology Reading Guide. Concept 19.1 A virus consists of a nucleic acid surrounded by a protein coat

AP Biology Reading Guide. Concept 19.1 A virus consists of a nucleic acid surrounded by a protein coat AP Biology Reading Guide Name Chapter 19: Viruses Overview Experimental work with viruses has provided important evidence that genes are made of nucleic acids. Viruses were also important in working out

More information

Virus and Prokaryotic Gene Regulation - 1

Virus and Prokaryotic Gene Regulation - 1 Virus and Prokaryotic Gene Regulation - 1 We have discussed the molecular structure of DNA and its function in DNA duplication and in transcription and protein synthesis. We now turn to how cells regulate

More information

History electron microscopes

History electron microscopes Viruses History Through the 1800s, many scientists discovered that something smaller than bacteria could cause disease and they called it virion (Latin word- poison) In the 1930s, after the invention of

More information

Revisiting the Definition of Living Thing

Revisiting the Definition of Living Thing Biology of Viruses (Ch 0 p77 and 88-9) What do you already know about viruses? Revisiting the Definition of Living Thing How did we define a living thing? H0 DOMAIN ARCHAEA virus So, if the Cell Theory

More information

Unit 13.2: Viruses. Vocabulary capsid latency vaccine virion

Unit 13.2: Viruses. Vocabulary capsid latency vaccine virion Unit 13.2: Viruses Lesson Objectives Describe the structure of viruses. Outline the discovery and origins of viruses. Explain how viruses replicate. Explain how viruses cause human disease. Describe how

More information

19 2 Viruses Slide 1 of 34

19 2 Viruses Slide 1 of 34 1 of 34 What Is a Virus? What Is a Virus? Viruses are particles of nucleic acid, protein, and in some cases, lipids. Viruses can reproduce only by infecting living cells. 2 of 34 What Is a Virus? Viruses

More information

SECTION 25-1 REVIEW STRUCTURE. 1. The diameter of viruses ranges from about a. 1 to 2 nm. b. 20 to 250 nm. c. 1 to 2 µm. d. 20 to 250 µm.

SECTION 25-1 REVIEW STRUCTURE. 1. The diameter of viruses ranges from about a. 1 to 2 nm. b. 20 to 250 nm. c. 1 to 2 µm. d. 20 to 250 µm. SECTION 25-1 REVIEW STRUCTURE VOCABULARY REVIEW Define the following terms. 1. virus 2. capsid 3. retrovirus 4. viroid 5. prion MULTIPLE CHOICE Write the correct letter in the blank. 1. The diameter of

More information

Bacteriophage Reproduction

Bacteriophage Reproduction Bacteriophage Reproduction Lytic and Lysogenic Cycles The following information is taken from: http://student.ccbcmd.edu/courses/bio141/lecguide/unit3/index.html#charvir Bacteriophage Structure More complex

More information

Viral structure م.م رنا مشعل

Viral structure م.م رنا مشعل Viral structure م.م رنا مشعل Viruses must reproduce (replicate) within cells, because they cannot generate energy or synthesize proteins. Because they can reproduce only within cells, viruses are obligate

More information

Viruses, Viroids, and Prions

Viruses, Viroids, and Prions PowerPoint Lecture Presentations prepared by Bradley W. Christian, McLennan Community College C H A P T E R 13 Viruses, Viroids, and Prions General Characteristics of Viruses Obligatory intracellular parasites

More information

Dr. Gary Mumaugh. Viruses

Dr. Gary Mumaugh. Viruses Dr. Gary Mumaugh Viruses Viruses in History In 1898, Friedrich Loeffler and Paul Frosch found evidence that the cause of foot-and-mouth disease in livestock was an infectious particle smaller than any

More information

A virus consists of a nucleic acid surrounded by a protein coat. [2]

A virus consists of a nucleic acid surrounded by a protein coat. [2] GUIDED READING - Ch. 19 - VIRUSES NAME: Please print out these pages and HANDWRITE the answers directly on the printouts. Typed work or answers on separate sheets of paper will not be accepted. Importantly,

More information

2) What is the difference between a non-enveloped virion and an enveloped virion? (4 pts)

2) What is the difference between a non-enveloped virion and an enveloped virion? (4 pts) Micro 260 SFCC Spring 2010 Name: All diagrams and drawings shall be hand drawn (do not photo-copied from a publication then cut and pasted into work sheet). Do not copy other student s answers. Para phase

More information

18.2. Viral Structure and Reproduction. Viruses differ in shape and in ways of entering

18.2. Viral Structure and Reproduction. Viruses differ in shape and in ways of entering 18.2 Viral Structure and Reproduction VOCABULARY bacteriophage lytic infection lysogenic infection prophage compare the structures of viruses to cells, describe viral reproduction, and describe the role

More information

Wednesday, October 19, 16. Viruses

Wednesday, October 19, 16. Viruses Viruses Image of an animal cell More realistic size of a virus compared to an animal cell Cells can fulfill all characteristics of life Viruses on their own can be considered lifeless chemicals, unless?

More information

Chapter 13. Viruses, Viroides and Prions

Chapter 13. Viruses, Viroides and Prions Chapter 13 Viruses, Viroides and Prions 1 A GLIMPSE OF HISTORY Tobacco mosaic disease (1890s) D. M. Iwanowsky, Martinus Beijerinck determined caused by filterable virus too small to be seen with light

More information

Viruses. CLS 212: Medical Microbiology Miss Zeina Alkudmani

Viruses. CLS 212: Medical Microbiology Miss Zeina Alkudmani Viruses CLS 212: Medical Microbiology Miss Zeina Alkudmani History Through the 1800s, many scientists discovered that something smaller than bacteria could cause disease and they called it virion (Latin

More information

The prokaryotic domains

The prokaryotic domains Diversity of Bacteria, Archaea, and Viruses Chapter 19 The prokaryotic domains Bacteria Three types of structure Spherical, rod-shaped, and spiral Archaea Many are extremophilic Prefer to live in very

More information

Viruses. Properties. Some viruses contain other ingredients (e.g., lipids, carbohydrates), but these are derived from their host cells.

Viruses. Properties. Some viruses contain other ingredients (e.g., lipids, carbohydrates), but these are derived from their host cells. Viruses Properties They are obligate intracellular parasites. Probably there are no cells in nature that escape infection by one or more kinds of viruses. (Viruses that infect bacteria are called bacteriophages.)

More information

Viruses. and Prions. ct o, ni, 21. Viruses. Table 2. Essential Questions

Viruses. and Prions. ct o, ni, 21. Viruses. Table 2. Essential Questions ct o, ni, 21 Essential Questions ;1 What is the general structure of a virus? What are similarities and differences in the lytic cycle, the lysogenic cycle, and retroviral replication? I What is the relationship

More information

Starting with MICROBIOLOGY

Starting with MICROBIOLOGY Starting with MICROBIOLOGY Micro means very small and biology is the study of living things. Microbes are the oldest form of life on Earth. They've been here for 3.8 billion years! Microbes live everywhere.

More information

Viruses Tomasz Kordula, Ph.D.

Viruses Tomasz Kordula, Ph.D. Viruses Tomasz Kordula, Ph.D. Resources: Alberts et al., Molecular Biology of the Cell, pp. 295, 1330, 1431 1433; Lehninger CD Movie A0002201. Learning Objectives: 1. Understand parasitic life cycle of

More information

LESSON 4.4 WORKBOOK. How viruses make us sick: Viral Replication

LESSON 4.4 WORKBOOK. How viruses make us sick: Viral Replication DEFINITIONS OF TERMS Eukaryotic: Non-bacterial cell type (bacteria are prokaryotes).. LESSON 4.4 WORKBOOK How viruses make us sick: Viral Replication This lesson extends the principles we learned in Unit

More information

Unit 4 Student Guided Notes

Unit 4 Student Guided Notes Structure of Viruses Discovery of the Virus Unit 4 Student Guided Notes Many human epidemics were well documented and observed in history, but. The following 3 discoveries shaped our knowledge of viruses

More information

How could the small size of viruses have helped researchers detect viruses before the invention of the electron microscope? 13-1

How could the small size of viruses have helped researchers detect viruses before the invention of the electron microscope? 13-1 3 4 5 6 7 8 9 0 3 4 5 6 Chapter 3 Viruses, Viroids, and Prions General Characteristics of Viruses General Characteristics of Viruses Obligatory intracellular parasites Contain DNA or RNA Contain a protein

More information

Purpose: To describe the characteristics of viruses and how they infect a host cell.

Purpose: To describe the characteristics of viruses and how they infect a host cell. Intro to Viruses Group Worksheet Name: Per: # Purpose: To describe the characteristics of viruses and how they infect a host cell. Directions: Discuss the following questions as a group and use the resources

More information

5/6/17. Diseases. Disease. Pathogens. Domain Bacteria Characteristics. Bacteria Viruses (including HIV) Pathogens are disease-causing organisms

5/6/17. Diseases. Disease. Pathogens. Domain Bacteria Characteristics. Bacteria Viruses (including HIV) Pathogens are disease-causing organisms 5/6/17 Disease Diseases I. II. Bacteria Viruses (including HIV) Biol 105 Chapter 13a Pathogens Pathogens are disease-causing organisms Domain Bacteria Characteristics 1. Domain Bacteria are prokaryotic.

More information

LESSON 1.4 WORKBOOK. Viral sizes and structures. Workbook Lesson 1.4

LESSON 1.4 WORKBOOK. Viral sizes and structures. Workbook Lesson 1.4 Eukaryotes organisms that contain a membrane bound nucleus and organelles. Prokaryotes organisms that lack a nucleus or other membrane-bound organelles. Viruses small, non-cellular (lacking a cell), infectious

More information

LESSON 1.4 WORKBOOK. Viral structures. Just how small are viruses? Workbook Lesson 1.4 1

LESSON 1.4 WORKBOOK. Viral structures. Just how small are viruses? Workbook Lesson 1.4 1 Eukaryotes- organisms that contain a membrane bound nucleus and organelles Prokaryotes- organisms that lack a nucleus or other membrane-bound organelles Viruses-small acellular (lacking a cell) infectious

More information

Medical Virology. Herpesviruses, Orthomyxoviruses, and Retro virus. - Herpesviruses Structure & Composition: Herpesviruses

Medical Virology. Herpesviruses, Orthomyxoviruses, and Retro virus. - Herpesviruses Structure & Composition: Herpesviruses Medical Virology Lecture 2 Asst. Prof. Dr. Dalya Basil Herpesviruses, Orthomyxoviruses, and Retro virus - Herpesviruses Structure & Composition: Herpesviruses Enveloped DNA viruses. All herpesviruses have

More information

VIROIDS, PRIONS. Infectious Stage When virus infects a cell, nucleic acid must be uncoated and gain access to metabolic machinery of cell.

VIROIDS, PRIONS. Infectious Stage When virus infects a cell, nucleic acid must be uncoated and gain access to metabolic machinery of cell. VIROIDS, PRIONS A virus is a small infectious agent that can replicate only inside the living cells of organisms. Most viruses are too small to be seen directly with a light microscope. Viruses infect

More information

Human Genome Complexity, Viruses & Genetic Variability

Human Genome Complexity, Viruses & Genetic Variability Human Genome Complexity, Viruses & Genetic Variability (Learning Objectives) Learn the types of DNA sequences present in the Human Genome other than genes coding for functional proteins. Review what you

More information

Virology. What is a virus? How do viruses differ from cellular microorganisms?

Virology. What is a virus? How do viruses differ from cellular microorganisms? Virology What is a virus? How do viruses differ from cellular microorganisms? 1. Acellular o consist of a particle consisting of a nucleic acid surrounded by a protein coat. o In extracellular form a virus

More information

numbe r Done by Corrected by Doctor

numbe r Done by Corrected by Doctor numbe r 5 Done by Mustafa Khader Corrected by Mahdi Sharawi Doctor Ashraf Khasawneh Viral Replication Mechanisms: (Protein Synthesis) 1. Monocistronic Method: All human cells practice the monocistronic

More information

8/13/2009. Diseases. Disease. Pathogens. Domain Bacteria Characteristics. Bacteria Shapes. Domain Bacteria Characteristics

8/13/2009. Diseases. Disease. Pathogens. Domain Bacteria Characteristics. Bacteria Shapes. Domain Bacteria Characteristics Disease Diseases I. Bacteria II. Viruses including Biol 105 Lecture 17 Chapter 13a are disease-causing organisms Domain Bacteria Characteristics 1. Domain Bacteria are prokaryotic 2. Lack a membrane-bound

More information

7.013 Spring 2005 Problem Set 7

7.013 Spring 2005 Problem Set 7 MI Department of Biology 7.013: Introductory Biology - Spring 2005 Instructors: Professor Hazel Sive, Professor yler Jacks, Dr. Claudette Gardel 7.013 Spring 2005 Problem Set 7 FRIDAY May 6th, 2005 Question

More information

Section A: The Genetics of Viruses

Section A: The Genetics of Viruses CHAPTER 18 MICROBIAL MODELS: THE GENETICS OF VIRUSES AND BACTERIA Section A: The Genetics of Viruses 1. Researchers discovered viruses by studying a plant disease 2. A virus is a genome enclosed in a protective

More information

I. Bacteria II. Viruses including HIV. Domain Bacteria Characteristics. 5. Cell wall present in many species. 6. Reproduction by binary fission

I. Bacteria II. Viruses including HIV. Domain Bacteria Characteristics. 5. Cell wall present in many species. 6. Reproduction by binary fission Disease Diseases I. Bacteria II. Viruses including are disease-causing organisms Biol 105 Lecture 17 Chapter 13a Domain Bacteria Characteristics 1. Domain Bacteria are prokaryotic 2. Lack a membrane-bound

More information

Viruses, Viroids, and Prions

Viruses, Viroids, and Prions 2.2 Figure 1 Human infl uenza viruses cause seasonal fl u. It would take 10 million viruses placed side by side to cover a distance of 1 mm. virus a small infectious particle containing genetic material

More information

Viral Genetics. BIT 220 Chapter 16

Viral Genetics. BIT 220 Chapter 16 Viral Genetics BIT 220 Chapter 16 Details of the Virus Classified According to a. DNA or RNA b. Enveloped or Non-Enveloped c. Single-stranded or double-stranded Viruses contain only a few genes Reverse

More information

Chapter 21: Prokaryotes & Viruses

Chapter 21: Prokaryotes & Viruses Chapter 21: Prokaryotes & Viruses Microorganisms Single-celled organisms that are too small to be seen without a microscope Bacteria are the smallest living organisms Viruses are smaller but are not alive

More information

Chapter 08 Lecture Outline

Chapter 08 Lecture Outline Chapter 08 Lecture Outline See separate PowerPoint slides for all figures and tables preinserted into PowerPoint without notes. Copyright 2016 McGraw-Hill Education. Permission required for reproduction

More information

Chapter 19. Viruses. Concept 19.1 A virus consists of a nucleic acid surrounded by a protein coat.

Chapter 19. Viruses. Concept 19.1 A virus consists of a nucleic acid surrounded by a protein coat. Chapter 19 Viruses Lecture Outline Overview: A Borrowed Life Viruses are the simplest biological systems. Most viruses are little more than aggregates of nucleic acids and protein genes in a protein coat.

More information

One of the classifications was if the virus is enveloped or naked.

One of the classifications was if the virus is enveloped or naked. Last time we gave an introduction about viruses, we talked about; definition of viruses, characters of viruses, structures of viruses and classification of viruses. One of the classifications was if the

More information

Introductory Virology. Ibrahim Jamfaru School of Medicine UHAS

Introductory Virology. Ibrahim Jamfaru School of Medicine UHAS Introductory Virology Ibrahim Jamfaru School of Medicine UHAS Lecture outline Definition of viruses and general characteristics Structure of virus (virion) Chemical composition of viruses Virus morphology

More information

Viruses 101., and concluded that living organisms do not crystallize. In other words,.

Viruses 101., and concluded that living organisms do not crystallize. In other words,. Viruses 101 In 1897, Dutch scientist called tiny particles in the liquid extracted from a plant disease, which is the Latin word for. In 1935, American biochemist isolated crystals of, and concluded that

More information

Name Class Date. Infection in which a virus inserts its nucleic acid into the DNA of the host cell and is duplicated with the cell s DNA

Name Class Date. Infection in which a virus inserts its nucleic acid into the DNA of the host cell and is duplicated with the cell s DNA Name Class Date 20.1 Viruses Lesson Objectives Explain how viruses reproduce. Explain how viruses cause infection. BUILD Vocabulary A. The chart below shows key terms from the lesson with their definitions.

More information

BIOL 1010 Introduction to Biology: The Evolution and Diversity of Life. Spring 2011 Sections A & B

BIOL 1010 Introduction to Biology: The Evolution and Diversity of Life. Spring 2011 Sections A & B BIOL 1010 Introduction to Biology: The Evolution and Diversity of Life. Spring 2011 Sections A & B Steve Thompson: stthompson@valdosta.edu http://www.bioinfo4u.net 1 What about viruses? Truth is nobody

More information

Chapter 25. 바이러스 (The Viruses)

Chapter 25. 바이러스 (The Viruses) Chapter 25 바이러스 (The Viruses) Generalized Structure of Viruses 2 2 Virus Classification Classification based on numerous characteristics Nucleic acid type Presence or absence of envelope Capsid symmetry

More information

LEC 2, Medical biology, Theory, prepared by Dr. AYAT ALI

LEC 2, Medical biology, Theory, prepared by Dr. AYAT ALI General Characteristics, Structure and Taxonomy of Viruses Viruses A virus is non-cellular organisms made up of genetic material and protein that can invade living cells. They are considered both a living

More information

7.012 Problem Set 6 Solutions

7.012 Problem Set 6 Solutions Name Section 7.012 Problem Set 6 Solutions Question 1 The viral family Orthomyxoviridae contains the influenza A, B and C viruses. These viruses have a (-)ss RNA genome surrounded by a capsid composed

More information