Cells Ch1 Flashcards

1
Q

Properties of cell membrane.

A
  • must be small to work efficiently
  • has a high SA:V ratio
  • controls movement in and out of cell.
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2
Q

Plasma membrane

A

Phospholipid bilayer surrounding the cell.

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3
Q

Describe phospholipids and their polarity.

A

A phosphate-and-glycerol head with fatty acid(s) tail. Head is polar or hydrophilic, tail is non polar or hydrophobic.

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4
Q

Fluid mosaic theory

A

Singer and Nicholson 1972. Plasma membrane is a fluid combination of phospholipids, cholesterol and proteins.

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5
Q

Intrinsic proteins

A

Proteins spanning the entire bilayer, reaches inside of cell, eg channel proteins

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6
Q

Extrinsic proteins

A

Proteins on surface of cell, eg recognition (marker) proteins.

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7
Q

State types of proteins in cell.

A

Recognition, channel and receptor proteins.

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8
Q

Receptor proteins.

A

Recognises and binds specific molecules outside the cell, eg hormones.

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9
Q

Recognition proteins

A

Sticks out from plasma membrane and helps cells to identify each other and foreign bodies.

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10
Q

Channel proteins

A

Assists facilitated diffusion of molecules like glucose.

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11
Q

Diffusion

A

Net movement of substances from high concentration areas to low concentration areas. No energy required.

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12
Q

Passive diffusion

A

Occurs unaided. Movement across cell bilayer.

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13
Q

Facilitated diffusion

A

Aided movement across cell via channel protein.

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14
Q

Cell wall.

A

Surrounds membrane a of plant cells, giving rigidity and structure. Made of cellulose.

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15
Q

Active transport

A

Movement against concentration gradient, using energy from respiration. ATP gets it through as carrier, leaves as ADP.

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16
Q

Eukaryotic cells

A

Cells with membrane-bound organelles.

17
Q

Prokaryotic cells

A

Cells lacking membrane-bound organelles.

18
Q

Heterotrophic, with example.

A

Depends on outside sources for energy. Eg, all carnivores, herbivores, omnivores.

19
Q

Autotrophic, with example.

A

Makes its own energy, eg green plants via photosynthesis.

20
Q

Photosynthetic

A

Makes energy by converting sunlight, water and CO2 into oxygen and ATP.

21
Q

Chemosynthetic

A

Conversion of carbon molecules into energy using inorganic molecules (eg, hydrogen gas) as an energy source instead of sunlight.

22
Q

Osmosis

A

Net movement of liquids from areas of low concentration of solutes to areas of high concentration of solutes. No energy required.

23
Q

Hydrophilic

A

Water loving, dissolves in water.

24
Q

Hydrophobic

A

Water hating, doesn’t dissolve in water.

25
Q

Hypertonic

A

Solution with lower concentration of solutes than outside environment, so water leaves the cell.

26
Q

Hypotonic

A

Solution with higher concentration of solutes than outside environment, so water enters the cell.

27
Q

Isotonic

A

Solution outside cell = solution inside cell. No change.

28
Q

Extreme effects on spectrum of tonicity.

A

Hypotonic: the cell lyses in animal cells, becomes turgid in plant cells.
Hypertonic: the cell shrivels in animal cells, undergoes plasmolysis in plant cells.

29
Q

Endocytosis

A

Bulk transport of substances into the cell.

30
Q

Exocytosis

A

Bulk transport of substance out of the cell.

31
Q

Phagocytosis

A

Solids transported inside cell

32
Q

Pinocytosis

A

Liquids transported inside cell.

33
Q

Some properties of skin

A
  • regulates temperature
  • regulates water
  • forms a protective barrier
  • stops stuff falling out
34
Q

Nucleus

A

Control centre of cell; where DNA is found; has a membrane.

35
Q

Mitochondria

A

Produces all the cell’s energy.

36
Q

Golgi complex

A

Packages substances in membrane-bound sacs or vesicles to leave cell. Prominent in cells that shift protein out of cell.

37
Q

Ribosomes

A

Where proteins are made. Are floating freely in cell, or attached to ER. Composed of protein and RNA.

38
Q

Lysosomes

A

Digestive organelles of the cell, also responsible for programmed cell death (apoptosis).