Lecture 33 Flashcards

1
Q

describe mitochondrion

A

cristae = invaginations of inner membrane
respiratory chain in membrane
inner membrane, matrix and outer membrane

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2
Q

describe op - numbers

A

nadh = 2.5 atps
fadh = 1.5 atps - doesnt touch complex 1, only 3 = 6 protons so less atp
proton: oxygen = 10:1

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3
Q

describe op - gen

A

nadh - 2e- oxidized to nad+
4 protons
e- passthrough complex 1, coq, complex 3, cyt c, 4 protons - complex 4 2 protons - complex 5
10 protons pumped total = make one h2o molecule
1,2,3,4 = etc
conformational change = protons pumped from matrix - inner most compartment of mito into inner membrane space
protons pass through complexes 1,3,4 not 2

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4
Q

what establishes proton gradients

A

membranes

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5
Q

what are proton gradients

A

sources of enrgy
electrochem
150-200mv across membrane in mito
30mv/meter since small membrane

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6
Q

describe reaction of Free Energy change of NADH to O2

A

NADH+H + O –→NAD +H O=-220kJ/mol
-0.32 v = low standard reduction potential - neg = wanna give away
therefore electrons flow from low–> high reduction potential

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7
Q

describe oxphos wars

A

hypothesis = atp synthesized from high energy intermediate of respiratory chain during oxidation
akin to = glyceraldehyde 3 phosphate dehydrogenase (GAPDH) where phosphorylation coupled to oxidation
no intermediate
diseq of protons drives it

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8
Q

what is similar to gapdh

A

chemical coupling hypothesis

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9
Q

describe evidence of chemi osmotic coupling = 6 statements

A
  1. The respiratory chain can function in the absence of phosphate- not a phosphate intermediate
  2. The # moles of ATP generated through NADH oxidation was not an integer - half an intermediate does not work
  3. An intact IMM is required for OXPHOS - need to pump protons
  4. Key electron transport proteins span the IMM
  5. Uncouplers such as 2,4-Dinitrophenol (DNP) inhibit ATP synthesis - dissipates membrane potential - no atp
  6. Generating an ARTIFICIAL proton gradient permits ATP synthesis without electron transport - artificially drive atp just by protons
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10
Q

Why so many redox reactions?

A

needs to harness energy
40-50% rest lost to heat

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11
Q

describe p/o ratio - stoich of oxphos - gen

A

atp synthase - 13 protons
motor generates atp
push subunit ring - turns
h= from inter-membrane space to mito
each 360 rotation generates 3 atps
8 subunits = 8 protons go through for every 360 turn

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12
Q

what p/o ratios through complex 1 and 2

A

P/O ratio through Complex I: 10/3.7 = ~2.5
P/O ratio through Complex II: 6/3.7 = ~1.5
missing 4 protons from complex 1

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13
Q

describe how o/p ratio made - whole story

A

p/o = amount of atp molecules produced from every oxygen consumed

10h+ from complex 1, 10/3.7 = oxygen to proton stoich

8 protons - 3 atps made = 8/3 = 2.7 p/atp

inorganic phosphate comes from outside via transporter = symporter and brings in 1 proton with phosphate

Proton to atp stoich = 3.7

11/3 = 3.7
2e- = 10 protons

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14
Q

Aerobic Metabolism Balance Sheet - cytosol glycolysis

A

from on glucose
2 atp net
2nadh (x2.5atp/nadh) = 5
total = 7 atps

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15
Q

Aerobic Metabolism Balance Sheet - mito pyruvate dehydrogenase (pdc)

A

From one pyruvate
1 nadh (x2.5/nadh) = 2.5 atp
total = 2.5 atp
MUST DOUBLE SINCE 2 PYRUVATE

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16
Q

Aerobic Metabolism Balance Sheet - mito cac

A

from one acetyl coa
2 nadh (x2.5/nadh) = 7.5atp
1 fadh2 (x1.5/fadh2) = 1.5atp
1 gtp = 1 atp
total = 10 atp
MUST DOUBLE SINCE 2 PYRUVATE

17
Q

Aerobic Metabolism Balance Sheet - grand total

A

glycolysis (per glucose) = 7atp
pdc (2.5 atp x 2 pyruvate/glucose) = 5atp
cac (10atp x 2 acetylcoa/glucose) = 20
TOTAL = 32 ATP/GLUCOSE
max in ideal conditions

18
Q

describe shuttling cytosolic nadh to mitochondria

A

gylcerolphosphate shuttle
mito makes atp
use shuttles
malate as portable shuttle
- nadh cannot get in by itself - have to make malate first