In the human skeletal muscle, amino acids can be used as fuel for ATP production when glucose is in short supply. In the cytosol, alanine can undergo oxidative deamination using NAD* as the oxidizing agent to produce pyruvate and NADH. Calculate the maximum amount of ATP that can be produced from the complete oxidation of one molecule of alanine in the muscle assuming that the mitochondrial ATP synthase has 10 c subunits. Assume that all reduced electron carriers are oxidized by electron transport coupled to ATP synthase. Partial credit will be awarded, 2. you must show your work for credit.

Biochemistry
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Author:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
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2.
In the human skeletal muscle, amino acids can be used as fuel for ATP production
when glucose is in short supply. In the cytosol, alanine can undergo oxidative deamination using
NAD* as the oxidizing agent to produce pyruvate and NADH. Calculate the maximum amount of
ATP that can be produced from the complete oxidation of one molecule of alanine in the muscle
assuming that the mitochondrial ATP synthase has 10 c subunits. Assume that all reduced electron
carriers are oxidized by electron transport coupled to ATP synthase. Partial credit will be awarded,
you must show your work for credit.
Transcribed Image Text:2. In the human skeletal muscle, amino acids can be used as fuel for ATP production when glucose is in short supply. In the cytosol, alanine can undergo oxidative deamination using NAD* as the oxidizing agent to produce pyruvate and NADH. Calculate the maximum amount of ATP that can be produced from the complete oxidation of one molecule of alanine in the muscle assuming that the mitochondrial ATP synthase has 10 c subunits. Assume that all reduced electron carriers are oxidized by electron transport coupled to ATP synthase. Partial credit will be awarded, you must show your work for credit.
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