Chapter 7: Membrane Structure and Function

Similar documents
Chapter 7: Membrane Structure and Function

3. Explain Gorter & Grendel s reasoning and contribution made to our understanding of membranes?

Membrane Structure and Function. Selectively permeable membranes are key to the cell's ability to function

Cell Membrane Structure and Function. What is the importance of having a cell membrane?

Chapter 7: Membrane Structure and Function. Key Terms:

Chapter 7: Membrane Structure & Function

Chapter 7: Membrane Structure & Function. 1. Membrane Structure. What are Biological Membranes? 10/21/2015. Why phospholipids? 1. Membrane Structure

Membrane Structure and Function

Membrane Structure and Function

Chapter 7 Membrane Structure and Function. The plasma membrane surrounds the living cells from their surroundings.

What do you remember about the cell membrane?

Biology Kevin Dees. Chapter 7 Membrane Structure and Function

MEMBRANE STRUCTURE AND FUNCTION

Membrane Structure and Function

MEMBRANE STRUCTURE AND FUNCTION

Bio 111 Study Guide Chapter 5 Membrane Transport and Cell Signaling

Membrane Structure and Function

Membrane Structure and Function. Cell Membranes and Cell Transport

Bio 111 Study Guide Chapter 7 Membrane Structure and Function

BIOLOGY. Membrane Structure and Function CAMPBELL. Reece Urry Cain Wasserman Minorsky Jackson

Ch. 7 Cell Membrane BIOL 222

Membrane Structure and Function

Membrane Structure and Function

Membrane Structure and Function

I. Membrane Structure Figure 1: Phospholipid. Figure 1.1: Plasma Membrane. Plasma Membrane:

CH 7.2 & 7.4 Biology

Membrane Structure and Function

Plasma Membrane Structure and Function

Membrane Structure & Function (Learning Objectives)

Phospholipid Bilayer Hydrophilic head Hydrophobic tail Molecules with hydrophilic and hydrophobic parts are called Ampipathic molecules

Chapter 7-3 Cell Boundaries

Cell Transport & the Cell Membrane

Concept 7.1: Cellular membranes are fluid mosaics of lipids and proteins

The Plasma Membrane - Gateway to the Cell

MEMBRANE STRUCTURE & FUNCTION

Membrane Structure. Membrane Structure. Membranes. Chapter 5

Plasma Membrane Structure and Function

Cell Membranes and Signaling

Lecture Series 5 Cellular Membranes

A. Membrane Composition and Structure. B. Animal Cell Adhesion. C. Passive Processes of Membrane Transport. D. Active Transport

The Cell Membrane & Movement of Materials In & Out of Cells PACKET #11

[S] [S] Hypertonic [H O] [H 2 O] g. Osmosis is the diffusion of water through membranes! 15. Osmosis. Concentrated sugar solution

CONCEPT 5.1: Cellular membranes are fluid mosaics of lipids and proteins

Ch7: Membrane Structure & Function

Membrane Structure and Function

BIOL1040 Study Guide Sample

Membrane Structure and Function

CELL TRANSPORT and THE PLASMA MEMBRANE. SB1d. Explain the impact of water on life processes (i.e., osmosis, diffusion).

Phospholipids. Extracellular fluid. Polar hydrophilic heads. Nonpolar hydrophobic tails. Polar hydrophilic heads. Intracellular fluid (cytosol)

Membrane Structure and Function - 1

Lecture Series 4 Cellular Membranes

Membrane Structure and Function

Maintained by plasma membrane controlling what enters & leaves the cell

The Cell Membrane. Phospholipids. Chapter 7: Arranged as a Phospholipid bilayer. Cell membrane defines cell! Cell membrane separates living cell from

10/28/2013. Double bilayer of lipids with imbedded, dispersed proteins Bilayer consists of phospholipids, cholesterol, and glycolipids

Membrane Transport and Cell Signaling

Outline. Membrane Structure and Function. Membrane Models Fluid-Mosaic. Chapter 5

Concept 7.5: Bulk transport across the plasma membrane occurs by exocytosis and endocytosis

Ch3: Cellular Transport Review KEY

3.2.3 Transport across cell membranes

The Cell Membrane & Movement of Materials In & Out of Cells PACKET #11

5 Membrane Transport and Cell Signaling

Homeostasis, Transport & The Cell Membrane. Chapter 4-2 (pg 73 75) Chapter 5

Membrane Structure and Membrane Transport of Small Molecules. Assist. Prof. Pinar Tulay Faculty of Medicine

Cellular Transport Notes

Unit 1 Matter & Energy for Life

Plasma Membrane & Movement of Materials in Cells

Cell Membranes. Q: What components of the cell membrane are in a mosaic pattern?

The Cell Membrane. Lecture 3a. Overview: Membranes. What is a membrane? Structure of the cell membrane. Fluid Mosaic Model. Membranes and Transport

Chapter 4: Cell Membrane Structure and Function

Cell membranes. Stef Elorriaga 4/11/2016 BIO102

The Cell Membrane. Cell membrane separates living cell from nonliving surroundings. Controls traffic in & out of the cell

CHAPTER 8 MEMBRANE STUCTURE AND FUNCTION

Cell Membrane Diagram

Transport: Cell Membrane Structure and Function. Biology 12 Chapter 4

Unit 1 Matter & Energy for Life

Cell Biology. The Plasma Membrane

Lecture Series 4 Cellular Membranes. Reading Assignments. Selective and Semi-permeable Barriers

The Plasma Membrane - Gateway to the Cell

The Cell Membrane AP Biology

Membrane structure & function

Gateway to the Cell 11/1/2012. The cell membrane is flexible and allows a unicellular organism to move FLUID MOSAIC MODEL

Cytology I Study of Cells

9/20/2016 CHAPTER 7 LECTURE NOTES. Section Objectives. Explain how a cell s plasma membrane functions.

The Cell Membrane. Usman Sumo Friend Tambunan Arli Aditya Parikesit. Bioinformatics Group Faculty of Mathematics and Science University of Indonesia

Cell Membrane: a Phospholipid Bilayer. Membrane Structure and Function. Fluid Mosaic Model. Chapter 5

Section 4: Cellular Transport. Cellular transport moves substances within the cell and moves substances into and out of the cell.

Chapter 5. The Working Cell. Lecture by Richard L. Myers

AP Biology. Overview. The Cell Membrane. Phospholipids. Phospholipid bilayer. More than lipids. Fatty acid tails. Phosphate group head

What kind of things must pass into and out of cells?? Be careful not to go too fast.

Transport. Slide 1 of 47. Copyright Pearson Prentice Hall

The Transport of Materials Across Cell Membranes

Comprehensive and Easy Course Notes for BIOL1040 Exams and Assessment

Movement Through the Cell Membrane

What is the Surface Area to Volume Ratio of a sphere with a radius of 5mm? Of 10 mm? What sphere can eliminate wastes and move materials quicker?

Chapter 4. Membrane Structure and Function. Copyright The McGraw-Hill Companies, Inc. Permission required for reproduction or display.

Describe the Fluid Mosaic Model of membrane structure.

Phospholipids. Phosphate head. Fatty acid tails. Arranged as a bilayer. hydrophilic. hydrophobic. Phosphate. Fatty acid. attracted to water

Delve AP Biology Lecture 4: 10/9/11 Melissa Ko and Anne Huang

Transcription:

Chapter 7: Membrane Structure and Function Name Period Concept 7.1 Cellular membranes are fluid mosaics of lipids and proteins 1. The large molecules of all living things fall into just four main classes. Name them. 2. Explain what is meant when we say a molecule is amphipathic. 3. In the 1960s, the Davson-Danielli model of membrane structure was widely accepted. Describe this model and then cite two lines of evidence that were inconsistent with it. 4. Who proposed the fluid mosaic model of membrane structure? When? Describe this model. 5. What is meant by membrane fluidity? Describe the movements seen in the fluid membrane. 6. Describe how each of the following can affect membrane fluidity: a. decreasing temperature b. phospholipids with unsaturated hydrocarbon chains c. cholesterol - 1 -

7. Membrane proteins are the mosaic part of the model. Describe each of the two main categories: integral proteins peripheral proteins 8. Use Figure 7.9 to briefly describe major functions of membrane proteins. Function Transport Description Enzymatic activity Signal transduction Cell-cell recognition Intercellular joining Attachment to cytoskeleton and ECM 9. Membrane carbohydrates are important in cell-cell recognition. What are two examples of this? 10. Distinguish between glycolipids and glycoproteins. - 2 -

11. Label the following structures: glycolipid glycoprotein integral protein peripheral protein cholesterol phospholipid ECM fibers cytoskeleton microfilaments integrins (go back to Chapter 6) Concept 7.2 Membrane structure results in selective permeability 12. Distinguish between channel proteins and carrier proteins. 13. Are transport proteins specific? Cite an example that supports your response. 14. Peter Agre received the Nobel Prize in 2003 for the discovery of aquaporins. What are they? - 3 -

15. Consider the following materials that must cross the membrane. For each, tell how it is accomplished. Material Method CO 2 glucose H+ O 2 H 2 O Concept 7.3 Passive transport is diffusion of a substance across a membrane with no energy investment 16. Define the following terms: diffusion concentration gradient passive transport osmosis isotonic hypertonic hypotonic turgid flaccid plasmolysis 17. Use as many words from the list above to describe why a carrot left on the counter overnight would become limp. Underline each word you use. - 4 -

18. What is facilitated diffusion? Is it active or passive? Cite two examples. 19. Label the hypotonic solution, isotonic solution, and hypertonic solution. What is indicated by the blue arrows? Label them. Which cell is lysed? Turgid? Flaccid? Plasmolyzed? Apply all these labels. 20. Why doesn t the plant cell burst? Concept 7.4 Active transport uses energy to move solutes against their gradients 21. Describe active transport. What type of transport proteins are involved, and what is the role of ATP in the process? - 5 -

22. The sodium-potassium pump is an important system for you to know. Use the following diagram to understand how it works. Use the following terms to label these figures, and briefly summarize what is occurring in each figure: extracellular fluid, cytoplasm, Na+, K+, ATP, ADP, P, transport protein. Summary 1. 2. 3. 4. 5. 6. 23. On the diagram below, add these labels: facilitated diffusion with a carrier protein, facilitated diffusion with a channel protein, active transport with a carrier protein, simple diffusion. For each type of transport, give an example of a material that is moved in this manner. 24. What is membrane potential? Which side of the membrane is positive? - 6 -

25. What are the two forces that drive the diffusion of ions across the membrane? What is the combination of these forces called? 26. What is cotransport? Explain how understanding it is used in our treatment of diarrhea. Concept 7.5 Bulk transport across the plasma membrane occurs by exocytosis and endocytosis 27. Define each of the following, and give a specific cellular example. endocytosis phagocytosis pinocytosis exocytosis receptor-mediated endocytosis 28. What is a ligand? What do ligands have to do with receptor-mediated endocytosis? 29. Are the processes you described in question 23 active or passive transport? Explain your response. - 7 -