1. For each of the following cell type and condition, determine the Net ATP from glycolysis, ATP from oxidative decarboxylation (if applicable), ATP formed from Krebs cycle (if applicable), and Total...


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1. For each of the following cell type and condition, determine the Net ATP from<br>glycolysis, ATP from oxidative decarboxylation (if applicable), ATP formed<br>from Krebs cycle (if applicable), and Total net ATP from the catabolism of one<br>mole of trisaccharide raffinose (glucose, galactose, fructose).<br>a) liver cell with non-functional malate-aspartate shuttle*<br>b) skeletal muscle cell lacking oxygen<br>c) cell with ATP synthase deficiency*<br>* Assume that the deficiency is isolated and won't influence the function of other<br>respiration components<br>

Extracted text: 1. For each of the following cell type and condition, determine the Net ATP from glycolysis, ATP from oxidative decarboxylation (if applicable), ATP formed from Krebs cycle (if applicable), and Total net ATP from the catabolism of one mole of trisaccharide raffinose (glucose, galactose, fructose). a) liver cell with non-functional malate-aspartate shuttle* b) skeletal muscle cell lacking oxygen c) cell with ATP synthase deficiency* * Assume that the deficiency is isolated and won't influence the function of other respiration components

Jun 11, 2022
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