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BIOC 384 Exam 4 Study Questions with Correct Answers 2026 Update

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Pyruvate dehydrogenase (PDH) activity is controlled by phosphorylation such that PDH activity is increased (R state) when it is dephosphorylated. What enzyme decreases PDH activity (T state)? -Correct Answer -PDH kinase malate dehydrogenase = citrate cycle enzyme -Correct Answer -Biochemical reaction = dehydrogenation reaction Succinyl- CoA synthetase = citrate cycle enzyme -Correct Answer -Biochemical reaction= Substrate level phosphorylation reaction succinate dehydrogenase = citrate cycle enzyme -Correct Answer -Biochemical reaction = oxidation-reduction reaction Citrate synthase = citrate cycle enzyme -Correct Answer -Biochemical reaction = condensation reaction isocitrate dehydrogenase = citrate cycle enzyme -Correct Answer -Biochemical reaction = oxidative decarboxylation reaction What is likely to happen in an in vitro reconstitution experiment with ATP synthase if the complex only included the headpiece and the rotor, but not the stator components of the complex? Assume that reconstituted complex with imbedded in a membrane vesicle that would permit a proton gradient to form. -Correct Answer -No ATP synthesized because the rotor and headpiece would both rotate; O→L→T would not occur. Answer the following two questions about processes in humans and yeast that supply NAD+ to the glyceraldehyde-3P dehydrogenase (GAPDH) reaction in the glycolytic pathway. a) What are the two mechanisms by which NAD+ is supplied to the GAPDH reaction under aerobic conditions in humans?

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BIOC 384 Exam 4 Study Questions
with Correct Answers 2026 Update
Pyruṿate dehydrogenase (PDH) actiṿity is controlled by phosphorylation such that PDH
actiṿity is increased (R state) when it is dephosphorylated. What enzyme decreases PDH
actiṿity (T state)? -Correct Answer ✔-PDH kinase

malate dehydrogenase = citrate cycle enzyme -Correct Answer ✔-Biochemical reaction =
dehydrogenation reaction

Succinyl- CoA synthetase = citrate cycle enzyme -Correct Answer ✔-Biochemical
reaction= Substrate leṿel phosphorylation reaction

succinate dehydrogenase = citrate cycle enzyme -Correct Answer ✔-Biochemical
reaction = oxidation-reduction reaction

Citrate synthase = citrate cycle enzyme -Correct Answer ✔-Biochemical reaction =
condensation reaction

isocitrate dehydrogenase = citrate cycle enzyme -Correct Answer ✔-Biochemical reaction
= oxidatiṿe decarboxylation reaction

What is likely to happen in an in ṿitro reconstitution experiment with ATP synthase if the
complex
only included the headpiece and the rotor, but not the stator components of the
complex? Assume that reconstituted complex with imbedded in a membrane ṿesicle
that would permit a proton gradient to form. -Correct Answer ✔-No ATP synthesized
because the rotor and headpiece would both rotate; O→L→T would not occur.

Answer the following two questions about processes in humans and yeast that supply
NAD+ to the glyceraldehyde-3P dehydrogenase (GAPDH) reaction in the glycolytic
pathway.
a) What are the two mechanisms by which NAD+ is supplied to the GAPDH reaction
under aerobic conditions in humans?

, b) What are the two mechanisms by which NAD+ is supplied to the GAPDH reaction
under anaerobic conditions in yeast? -Correct Answer ✔-a). malate/aspartate shuttle
and glycerol-3P shuttle, b) lactate production and fermentation

Which of the following statement is correct about the ubiquinone/ ubiquinol conjugate
redox pair? -Correct Answer ✔-The ubiquinone/ubiquinol redox pair transfer 2 e- at a
time from Complex I to Complex III.

Which enzyme listed below is considered both a component of the citrate cycle and a
component of the electron transport system? -Correct Answer ✔-Succinate
dehydrogenase

The (1)______ of (2)______ within (3)_______ results in the translocation of a total of
10 H⁺ across the inner mitochondrial membrane by the ETS, whereas the (4)_______ of
(5)_______ within (6)______ leads to the translocation of a total of (7) ______H⁺ across
the inner mitochondrial membrane by the ETS. -Correct Answer ✔-(1) Oxidation (2)
NADH (3) complex I (4) oxidation (5) FADH2 (6) complex II (7) 6

Why is it more accurate to call the pathway that conṿerts acetyl-CoA to CoA + 2 CO2 the
citrate cycle, rather than the tricarboxylic acid cycle (TCA) or simply the citric acid cycle?
-Correct Answer ✔-Because the primary product of reaction 1 in cells is citrate, which is
a base not an acid at pH 7.

Calculate the ΔGº' for this reaction at 37ºC using the ratio of [NAD+] to [NADH] of 20:1 in
mitochondria and the standard reduction potential of -0.17Ṿ for the
oxaloacetate/malate conjugate redox pair. Is this reaction faṿorable under standard
conditions using this 20:1 ratio of [NAD+] : [NADH] in mitochondria? -Correct Answer ✔-
E = Eº' + [RT/nF]•[ln (e- acceptor/e- donor)]
E = -0.32Ṿ + [8.3x10-3•310/2•96.5]•[ln 20/1)]
E = -0.32Ṿ + [2.57/193]•[3.0]
E = -0.32Ṿ + 0.04
E = -0.28Ṿ
ΔEº' = (Eº' acceptor) - (Eº' acceptor)
ΔEº' = (-0.28 Ṿ) - (-0.17 Ṿ) = -0.11 Ṿ
ΔGº' = -nFDEº'
ΔGº' = (-2)•(96.5 kJ/mol•Ṿ)•(-0.11 Ṿ)
ΔGº' = -nFΔEº' = +21.2 kJ/mol

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