The carbon skeletons of amino acids can be catabolised via various steps. These end products are often intermediates of the citric acid cycle. For example: Valine →→→ → succinyl-CoA Arginine - →→→ a-ketoglutarate Aspartate →→→ oxaloacetate What is the theoretical ATP yield from the catabolism of the end product of valine degradation feeding into the citric acid cycle? (Your answer should consider ATP production from the citric acid cycle up until oxaloacetate, as well as electron transport chain-mediated production of ATP. Your answer should be a number, without any other text. E.g.: 2. The image below has been provided to help you.) Acetyl-CoA NADH Oxaloacetate Malate Fumarate Citrate Isocitrate * a-Ketoglutarate CO₂ CO₂ NADH NADHO
The carbon skeletons of amino acids can be catabolised via various steps. These end products are often intermediates of the citric acid cycle. For example: Valine →→→ → succinyl-CoA Arginine - →→→ a-ketoglutarate Aspartate →→→ oxaloacetate What is the theoretical ATP yield from the catabolism of the end product of valine degradation feeding into the citric acid cycle? (Your answer should consider ATP production from the citric acid cycle up until oxaloacetate, as well as electron transport chain-mediated production of ATP. Your answer should be a number, without any other text. E.g.: 2. The image below has been provided to help you.) Acetyl-CoA NADH Oxaloacetate Malate Fumarate Citrate Isocitrate * a-Ketoglutarate CO₂ CO₂ NADH NADHO
Biochemistry
9th Edition
ISBN:9781319114671
Author:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Publisher:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Chapter1: Biochemistry: An Evolving Science
Section: Chapter Questions
Problem 1P
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