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Published byGiles Russell Modified over 9 years ago
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MEMBRANE STRUCTURE AND FUNCTION CHAPTER 7 PART 2
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CELL-TO-CELL RECOGNITION Carbohydrates are often used for ID Glycolipids – carbs bound to lipids Glycoproteins – carbs bound to proteins (most) Important for: Cell sorting in embryo Immune responses Blood types
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MEMBRANE SYNTHESIS Molecules on the inside of the ER end up on the outside of the membrane
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MEMBRANE PERMEABILITY Moves easily Nonpolar molecules (hydrophobic) Hydrocarbons, CO 2, O 2 Doesn’t move easily Polar molecules (hydrophilic) Glucose, water Charged molecules surrounded by water Ions
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AQUAPORINS 3 billion water molecules per second single file Without them, H 2 O would diffuse slowly through the membrane
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DIFFUSION Passive Transport – requires no energy Substances move from high to low concentration Down the concentration gradient
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OSMOSIS Diffusion of water across a selectively permeable membrane Difference in FREE WATER CONCENTRATION causes it to move
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OSMOSIS
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CELLS WITHOUT WALLS Tonicity – ability of cell to gain or lose water Isotonic “iso” = same No NET movement of water No change in cell size
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CELLS WITHOUT WALLS Hypertonic Hyper = more (solutes) Water moves out Cell will shrink
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CELLS WITHOUT WALLS Hypotonic Hypo = “less” (solute) Water moves in Cell size increases Cell will swell and burst
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OSMOREGULATION Organisms that live in hyper or hypo tonic environments have special adaptations Ex: Paramecium contractile vacuole
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CELLS WITH WALLS Hypotonic – turgid “very firm” Isotonic – flaccid “limp” Hypertonic – plasmolysis Membrane pulls away from wall Plant wilts
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FACILITATED DIFFUSION Passive transport with the help of proteins Channel proteins Aquaporins Ion Channels Gated channels open in response to a stimulus
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ACTIVE TRANSPORT Move things against the concentration gradient Uses energy Sodium-potassium pump
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MEMBRANE POTENTIAL Voltage across the membrane -50 to -200 mV (inside negative) Energy source for all movement Favors cations in, anions out
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ION DIFFUSION Electrochemical gradient Chemical force – ions concentration gradient Electrical force – membrane potential
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COTRANSPORT Substance that was pumped across the membrane does work as it comes back Brings another molecule with it
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BULK TRANSPORT Exocytosis Transport vesicle from Golgi moves along microtubules toward plasma membrane Endocytosis Cell takes in molecules and matter by forming new vesicles Phagocytosis “eating” Pinocytosis “drinking” Receptor-Mediated Endocytosis
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BULK TRANSPORT Exocytosis Transport vesicle from Golgi moves along microtubules toward plasma membrane Endocytosis
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BULK TRANSPORT
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Endocytosis
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LIGANDS A molecule that binds to a receptor site of another molecule Ex: LDL
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