Below is the overall net equation for the complete oxidation of pyruvate. Calculate the number of ATP molecules that can be produced from the complete oxidation of 6 molecules of pyruvate. Pyruvate + 4NAD+ + FAD + GDP + Pi + 2H₂O → 3CO2 + 4NADH + 4H+ + FADH2 + GTP (Given: The oxidation of one NADH yields 2.5 ATP; the oxidation of one FADH2 yields 1.5 ATP; and one GDP yields 1 ATP.) O 75 ATP O 60 ATP O 12.5 ATP

General, Organic, and Biological Chemistry
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Chapter24: Carbohydrate Metabolism
Section: Chapter Questions
Problem 24.21EP
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Below is the overall net equation for the complete oxidation of pyruvate.
Calculate the number of ATP molecules that can be produced from the
complete oxidation of 6 molecules of pyruvate.
Pyruvate + 4NAD+ + FAD + GDP + Pi + 2H₂O →
3CO2 + 4NADH + 4H+ + FADH2 + GTP
(Given: The oxidation of one NADH yields 2.5 ATP; the oxidation of one
FADH2 yields 1.5 ATP; and one GDP yields 1 ATP.)
O 75 ATP
O 60 ATP
O 12.5 ATP
O 32 ATP
Transcribed Image Text:Below is the overall net equation for the complete oxidation of pyruvate. Calculate the number of ATP molecules that can be produced from the complete oxidation of 6 molecules of pyruvate. Pyruvate + 4NAD+ + FAD + GDP + Pi + 2H₂O → 3CO2 + 4NADH + 4H+ + FADH2 + GTP (Given: The oxidation of one NADH yields 2.5 ATP; the oxidation of one FADH2 yields 1.5 ATP; and one GDP yields 1 ATP.) O 75 ATP O 60 ATP O 12.5 ATP O 32 ATP
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