cell membranes! ooooooooo…. fluid mosaic!. membrane structure, i selective permeability ...
TRANSCRIPT
![Page 1: Cell Membranes! OOOOooooo…. Fluid Mosaic!. Membrane structure, I Selective permeability Amphipathic~ hydrophobic & hydrophilic regions Singer-Nicolson:](https://reader036.vdocuments.site/reader036/viewer/2022062305/56649efb5503460f94c0d2ac/html5/thumbnails/1.jpg)
Cell Membranes!
OOOOooooo….
Fluid Mosaic!
![Page 2: Cell Membranes! OOOOooooo…. Fluid Mosaic!. Membrane structure, I Selective permeability Amphipathic~ hydrophobic & hydrophilic regions Singer-Nicolson:](https://reader036.vdocuments.site/reader036/viewer/2022062305/56649efb5503460f94c0d2ac/html5/thumbnails/2.jpg)
Membrane structure, I
Selective permeability Amphipathic~
hydrophobic & hydrophilic regions
Singer-Nicolson: fluid mosaic model
![Page 3: Cell Membranes! OOOOooooo…. Fluid Mosaic!. Membrane structure, I Selective permeability Amphipathic~ hydrophobic & hydrophilic regions Singer-Nicolson:](https://reader036.vdocuments.site/reader036/viewer/2022062305/56649efb5503460f94c0d2ac/html5/thumbnails/3.jpg)
Membrane structure, II
Phospholipids~ membrane fluidity Cholesterol~ membrane stabilization “Mosaic” Structure~ Integral proteins~ transmembrane
proteins Peripheral proteins~ surface of
membrane Membrane carbohydrates ~ cell to
cell recognition; oligosaccharides (cell markers); glycolipids; glycoproteins
Animation
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Membrane structure, III
Membrane protein function: •transport •enzymatic activity •signal transduction •intercellular joining •cell-cell recognition •ECM attachment
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Membrane traffic Diffusion~ tendency of molecules to move
from a high to low concentration by random movement.
Solutes will diffuse down their own concentration gradients.
NOT affected by concentration gradients of other solutes!!!
Osmosis~the diffusion of water across a selectively permeable membrane.
Passive transport~ diffusion of a substance across a biological membrane.
Does NOT require energy Goes DOWN a concentration gradient
Active Transport ~ movement across a membrane that DOES require energy.
Usually goes UP a concentration gradient. Energy, of course, usually supplied by _____ATP!
Animation
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Water balance Osmoregulation~control of water balance
When comparing 2 sides of a membrane, one side may be:
Hypertonic~ higher solute concentration (and the other side will be…)
Hypotonic~ lower solute concentration
Water will move to the Hypertonic!! Think of it as “watering it down”.
Isotonic~ equal concentrations of solutes
Cells with Walls: Turgid (very firm)
Flaccid (limp)
Plasmolysis~ plasma membrane pulls away from cell wall
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Specialized Transport Transport proteins: Facilitated diffusion~
passage of molecules and ions with transport proteins across a membrane down the concentration gradient
Active transport~ movement of a substance against its concentration gradient with the help of cellular energy
Animation
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Types of Active Transport Sodium-potassium pump Exocytosis~ secretion of
macromolecules by the fusion of vesicles with the plasma membrane
Endocytosis~ import of macromolecules by forming new vesicles with the plasma membrane
3 types of Endocytosis:
•phagocytosis- “cell eating”
•pinocytosis- “cell drinking”
•receptor-mediated endocytosis
Animation WebLink