B. Consider the following types of cells and their respective conditions: i. a liver cell with non-functional malate-aspartate shuttle* ii. a skeletal muscle cell lacking oxygen iii. a cell with ATP synthase deficiency* * Assume that the deficiency is isolated and will not influence the function of other respiration component In these cells/tissues, determine the following from the catabolism of the 2.5 moles of the disaccharide lactose (which will be hydrolyzed first to yield glucose and galactose). a. Net ATP from glycolysis

Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
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Problem 1RQ: The correct sequence of levels forming the structural hierarchy is A. (a) organ, organ system,...
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B. Consider the following types of cells and their respective conditions:
i. a liver cell with non-functional malate-aspartate shuttle*
ii. a skeletal muscle cell lacking oxygen
iii. a cell with ATP synthase deficiency*
* Assume that the deficiency is isolated and will not influence the function of other respiration components
In these cells/tissues, determine the following from the catabolism of the 2.5 moles of the
disaccharide lactose (which will be hydrolyzed first to yield glucose and galactose).
Net ATP from glycolysis
b. ATP from oxidative decarboxylation (if applicable)
c. ATP formed from Krebs cycle (if applicable)
d. Total net ATP
Transcribed Image Text:B. Consider the following types of cells and their respective conditions: i. a liver cell with non-functional malate-aspartate shuttle* ii. a skeletal muscle cell lacking oxygen iii. a cell with ATP synthase deficiency* * Assume that the deficiency is isolated and will not influence the function of other respiration components In these cells/tissues, determine the following from the catabolism of the 2.5 moles of the disaccharide lactose (which will be hydrolyzed first to yield glucose and galactose). Net ATP from glycolysis b. ATP from oxidative decarboxylation (if applicable) c. ATP formed from Krebs cycle (if applicable) d. Total net ATP
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