cell membrane & major components
types of lipids, carbs & proteins in membranes
transport!
scientific reports
random revision >:D
100

the cell membrane is a ________ bilayer

phospholipid


100

which membrane lipids are most abundant?

phospholipids

100

which transport processes do not require energy

simple diffusion, osmosis, faciliated diffusion

100

what type of curve does  a [s] graph have?

michaelis - menten or logarithmic curve

100

which organelles have double membrane

mitochondria, nucleus, chloroplast

200

cell membrane composes of?

lipids, proteins & carbohydrates


200

what are the 3 main classes of membrane lipids

phospholipids , glycolipids, sterols

200

define simple diffusion

Flow of molecules from [high] to [low]

200

which curves involve 'connecting the dots' of the plot points?

tempearture & pH
200

compare & contrast smooth ER & rough ER

smooth: 

- lipid/steroid synthesis

- carbohydrate metabolism

- inactivate & detox drugs

- store & release Ca2+

300

100*: 

what type of model represennts the cell membrane

fluid mosaic

300

what is does oligosaccharides attach to & what is their function?

attached to proteins or lipids: 

- Help in signalling 

- Act as molecular markers (antigen) for the recognition of substances

300

define osmosis & what it is dependent on

Diffusion of water across a selective permeable membrane 

• Dependent on relative osmolarity (total solute concentration)

300

discuss the 3 points of cell theory

  • All organisms consist of one or more cells.

  • The cell is the basic unit of structure and organization in all organisms.

  • All cells come from pre-existing, living cells.

400

what is the composition of a phospholipid?

Consists of a polar head (attached to phosphate), backbone and non-polar fatty acids tails

400

compare & contrast saturated fatty acids & unsaturated fatty acids

Single bonds v Double bonds → bends/kinks chain Pack tightly v Do not pack tightly
Solidify at room temperature (RT) v Remains liquid at RT

400
contrast cells in hypertonic solution, isotonic solution & hypotonic solution

Cell in a hypertonic solution 

• Higher solute concentration OUTSIDE cell 

• Hence, water will move out of cell 

Cell in an isotonic solution 

• Same solute concentration to cell 

• No nett movement of water 

Cell in a hypotonic solution 

• Higher solute concentration INSIDE cell 

• Hence, water will diffuse into cell

400

what factors limit size?

Diffusion rates of molecules 


Maintaining concentrations of substances in cell


surface area/vol ratio 

500

describe integral proteins 

Hydrophobic regions embedded within lipid bilayer Classified by mode of attachment 

• Integral monotopic proteins 

• Transmembrane protein that acts as proton pump/channel

500

describe active transport

Requires membrane carrier protein (pump) Requires energy (ATP) 

Molecules able to move against concentration gradient 

• Uptake scarce essential nutrients 

• Remove waste and secretory products 

• Maintain [ions] 

Example: Na+/K+ pump (Na+ out and K+ in)

500

compare & contrast plant & animal cells

imilarities: 

- Cell membrane, Cytosol, Nucleus
- Organelles: ribosomes, cytoskeleton, peroxisomes, golgi complex, endoplasmic reticulum, mitochondria, 

differences: 

- plant cell: cell wall, chloroplasts, large vacuole, glyoxysomes (type of peroxisomes)
- animal cell: lysosomes, centrosome, cilium

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