Hemp oil contains eicosenoic acid (20:149) as its primary monounsaturated fatty acid. Let's consider the conversion of a molecule of eicosenoic acid to ẞ-hydroxybutyrate. What are the ẞ-oxidation products and how many ATP are required during activation for one molecule of lignoceric acid? Given the following, how many molecules of 8-hydroxybutyrate can be produced? 2 CoA CoA NADH NAD+ H+ OH B-hydroxybutyrate Based on the total NADH and FADH2 available after converting lignoceric acid into 8-hydroxybutyrate, what is the typical yield of ATP that can be produced in the liver? Don't forget to include any ATP required for activation steps.

Human Heredity: Principles and Issues (MindTap Course List)
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ISBN:9781305251052
Author:Michael Cummings
Publisher:Michael Cummings
Chapter10: From Proteins To Phenotypes
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Hemp oil contains eicosenoic acid (20:149) as its primary monounsaturated fatty acid. Let's consider the
conversion of a molecule of eicosenoic acid to ẞ-hydroxybutyrate.
What are the ẞ-oxidation products and how many ATP are required during activation for one molecule of lignoceric
acid?
Given the following, how many molecules of 8-hydroxybutyrate can be produced?
2
CoA
CoA
NADH NAD+
H+
OH
B-hydroxybutyrate
Based on the total NADH and FADH2 available after converting lignoceric acid into 8-hydroxybutyrate, what is the typical
yield of ATP that can be produced in the liver? Don't forget to include any ATP required for activation steps.
Transcribed Image Text:Hemp oil contains eicosenoic acid (20:149) as its primary monounsaturated fatty acid. Let's consider the conversion of a molecule of eicosenoic acid to ẞ-hydroxybutyrate. What are the ẞ-oxidation products and how many ATP are required during activation for one molecule of lignoceric acid? Given the following, how many molecules of 8-hydroxybutyrate can be produced? 2 CoA CoA NADH NAD+ H+ OH B-hydroxybutyrate Based on the total NADH and FADH2 available after converting lignoceric acid into 8-hydroxybutyrate, what is the typical yield of ATP that can be produced in the liver? Don't forget to include any ATP required for activation steps.
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