The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates...

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

Transcript of The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates...

Page 1: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

The Cell Membrane

Usman Sumo Friend TambunanArli Aditya Parikesit

Bioinformatics GroupFaculty of Mathematics and Science

University of Indonesia

Page 2: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Overview

• Cell membrane separates living cell from nonliving surroundings• thin barrier = 8nm thick

• Controls traffic in & out of the cell• selectively permeable• allows some substances to cross more easily

than others• hydrophobic vs hydrophilic

•Made of phospholipids, proteins & other macromolecules

Page 3: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Phospholipids• Fatty acid tails• hydrophobic

• Phosphate group head • hydrophilic

• Arranged as a bilayer

Fatty acid

Phosphate

Page 4: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Phospholipid bilayer

polarhydrophilicheads

nonpolarhydrophobictails

polarhydrophilicheads

Page 5: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Phospholipid bilayer

polarhydrophilicheads

nonpolarhydrophobictails

polarhydrophilicheads

Page 6: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

More than lipids… • In 1972, S.J. Singer & G. Nicolson proposed that

membrane proteins are inserted into the phospholipid bilayer

Page 7: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Membrane is a collage of proteins & other molecules embedded in the fluid matrix of the lipid bilayer

Extracellular fluid

Cholesterol

Cytoplasm

Glycolipid

Transmembraneproteins

Filaments ofcytoskeleton

Peripheralprotein

Glycoprotein

Phospholipids

Page 8: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Membrane fat composition varies• Fat composition affects flexibility• membrane must be fluid & flexible

• about as fluid as thick salad oil

• % unsaturated fatty acids in phospholipids• keep membrane less viscous

• cold-adapted organisms, like winter wheat • increase % in autumn

• cholesterol in membrane

Page 9: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Membrane Proteins• Proteins determine membrane’s specific

functions• cell membrane & organelle membranes each

have unique collections of proteins•Membrane proteins:• peripheral proteins • loosely bound to surface of membrane

• cell surface identity marker (antigens)

• integral proteins • penetrate lipid bilayer, usually across whole membrane

Page 10: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Proteins domains anchor molecule• Within membrane• nonpolar amino acids

• hydrophobic • anchors protein

into membrane

• On outer surfaces of membrane• polar amino acids

• hydrophilic

• extend into extracellular fluid & into cytosol

Polar areasof protein

Nonpolar areas of protein

Page 11: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

NH2

H+

COOH

Cytoplasm

Retinalchromophore

Nonpolar(hydrophobic)a-helices in thecell membrane H+

Porin monomerb-pleated sheets

Bacterialoutermembrane

proton pump channel in photosynthetic bacteria

water channel in bacteria

function through conformational change = shape change

Examples

Page 12: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Many Functions of Membrane ProteinsOutside

Plasmamembrane

InsideTransporter Cell surface

receptorEnzymeactivity

Cell surface identity marker

Attachment to thecytoskeleton

Cell adhesion

Page 13: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Membrane carbohydrates • Play a key role in cell-cell recognition• ability of a cell to distinguish one cell from another

• antigens

• important in organ & tissue development

• basis for rejection of foreign cells by immune system

Page 14: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

The Cell Membrane

Active and Passive Transport

Page 15: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Cell Membrane

• Phospholipid bilayer: hydrophilic heads and hydrophobic tails

• Semi-permeability

• Transport proteins (passive transport channels)

• Ion pumps (active transport pumps)

•Receptor proteins (neurons, hormones, immune system)

Page 16: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls
Page 17: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls
Page 18: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls
Page 19: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

•What is passive transport? What are the three types of passive transport?

Page 20: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Passive Transport

• Diffusion - process by which molecules tend to move from an area where they are more concentrated to an area where they are less concentrated

Page 21: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Passive Transport

• In Passive Transport - Molecules move down the concentration gradient (no energy required)• 1) simple diffusion - molecules are small enough and soluble

can pass directly through the lipid bilayer• 2) facilitated diffusion – need transport proteins (molecules

are either to large or can’t pass through the lipid bilayer themselves)• 3) osmosis – molecules can’t pass through lipid bilayer at all,

but water can(movement of water)• Depends on molecule size, lipid solubility, and concentration

gradient

Page 22: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls
Page 23: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls
Page 24: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Passive Diffusion

• http://www.youtube.com/watch?v=JShwXBWGMyY • http://www.youtube.com/watch?v=s0p1ztrbXPY

Page 25: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Solutions

• A mixture of solid particles (solute) and liquid (solvent)• Most common solvent is water• Cells are surrounded by solutions• Three types: isotonic, hypotonic, and hypertonic solutions

Page 26: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Isotonic Solutions

• Particles are equal inside and outside of the cell• Water molecules are equal inside and outside of the cell

Page 27: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Hypotonic Solutions

• There are more particles inside than outside• There is more water outside the cell• Water will move INTO the cell

Page 28: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Hypertonic Solutions

• There are more particles outside• There is more water inside• Water will move OUT OF the cell

Page 29: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls
Page 30: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Active Transport

• Molecules move against the concentration gradient• Requires energy• 1. Solute Pumps (Na+-K+-ATPase pump)• 2. Bulk Transport

Page 31: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

• Na+-K+-ATPase pump• https://mail.xavierhs.org/exchange/UngerJ/Inbox/No%20Subject-748.EML/07_16ActiveTransport_A.swf/C58EA28C-18C0-4a97-9AF2-036E93DDAFB3/07_16ActiveTransport_A.swf?attach=1

Page 32: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls
Page 33: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Transport Across The Membrane

• Endocytosis (pinocytosis, phagocytosis): phagocytes (macrophages)- molecules are coming into cells• Exocytosis: release of proteins, hormones,

neurotransmitters- release of proteins, hormones, neurotransmitters• http://www.youtube.com/watch?v=4gLtk8Yc1Zc&NR=1

Page 34: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls
Page 35: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls
Page 36: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Transport summary

simplediffusion

facilitateddiffusion

activetransport

ATP

Page 37: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

How about large molecules?• Moving large molecules into & out of cell• through vesicles & vacuoles

• endocytosis• phagocytosis = “cellular eating”

• pinocytosis = “cellular drinking”

• exocytosis

exocytosis

Page 38: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Endocytosis

phagocytosis

pinocytosis

receptor-mediated endocytosis

fuse with lysosome for digestion

non-specificprocess

triggered bymolecular signal

Page 39: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

The Special Case of Water

Movement of water across the cell membrane

2007-2008

Page 40: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Osmosis is diffusion of water

• Water is very important to life, so we talk about water separately• Diffusion of water from

high concentration of water to low concentration of water• across a

semi-permeable membrane

Page 41: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Concentration of water• Direction of osmosis is determined by

comparing total solute concentrations• Hypertonic - more solute, less water

• Hypotonic - less solute, more water

• Isotonic - equal solute, equal water

hypotonic hypertonic

net movement of water

Page 42: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

freshwater balanced saltwater

Managing water balance• Cell survival depends on balancing water

uptake & loss

Page 43: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Managing water balance• Isotonic

• animal cell immersed in mild salt solution• example:

blood cells in blood plasma

• problem: none

• no net movement of water• flows across membrane equally, in

both directions

• volume of cell is stablebalanced

Page 44: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Managing water balance• Hypotonic

• a cell in fresh water• example: Paramecium

• problem: gains water, swells & can burst• water continually enters

Paramecium cell

• solution: contractile vacuole • pumps water out of cell

• ATP

• plant cells• turgid freshwater

ATP

Page 45: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Water regulation• Contractile vacuole in Paramecium

ATP

Page 46: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Managing water balance• Hypertonic• a cell in salt water• example: shellfish

• problem: lose water & die

• solution: take up water or pump out salt

• plant cells• plasmolysis = wilt

saltwater

Page 47: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Aquaporins• Water moves rapidly into & out of cells• evidence that there were water channels

1991 | 2003

Peter AgreJohn Hopkins

Roderick MacKinnonRockefeller

Page 48: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

Cell (compared to beaker) hypertonic or hypotonicBeaker (compared to cell) hypertonic or hypotonicWhich way does the water flow? in or out of cell

.05 M .03 M

Osmosis…

Page 49: The Cell Membrane - Universitas Indonesia · 2014. 3. 19. · Overview •Cell membrane separates living cell from nonliving surroundings • thin barrier = 8nm thick •Controls

References

• http://bioap.wikispaces.com/file/view/Ch%207%20Cell%20Membrane.ppt• http://

www.xavierhs.org/s/717/images/editor_documents/faculty/tanzmanj/Cell%20Membrane%20Transport.ppt• http://

www.lf3.cuni.cz/opencms/export/sites/www.lf3.cuni.cz/en/applicant/premedical/study-materials/biology/8_Premedical_Cell_communication.ppt