The atp yield for a molecule depends on where it enters glycolysis or the citric acid cycle. The yield can be compared to the net yield of glucose, 30 atp. Determine the net atp yield of each starting molecule when fully oxidized to co2. Assume that glycolysis, the citric acid cycle, and oxidative phosphorylation are fully active.

Respuesta :

The net ATP yield for the given molecules is as follows:

  • The net ATP yield from fructose 1,6‑bisphosphate is 32 ATP
  • The net ATP yield from galactose is 30 ATP
  • The net ATP yield from dihydroxyacetone phosphate is 16 ATP
  • The net ATP yield from pyruvate is 12.5 ATP
  • The net ATP yield from lactate is 14 ATP
  • The net ATP yield from phosphoenolpyruvate is 13.5 ATP

What are the steps in the formation of ATP in the body?

The process of the formation of ATP involved three main reaction pathways, namely:

glycolysis- this is the reaction pathway in which sugar molecules are broken down to produce two molecules of pyruvate.

citric acid cycle - the pyruvate produced from glycolysis is first oxidized to acetyl-CoA which then enters the citric acid cycle to produce ATP and NADH and FADH₂

oxidative phosphorylation - this is the process where electrons are transferred to oxygen by NADH and FADH₂

Learn more about oxidative phosphorylation at: https://brainly.com/question/8562250

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Complete question:

The ATP yield for a molecule depends on where it enters glycolysis or the citric acid cycle. The yield can be compared to the net yield of glucose, 30 ATP.

Determine the net ATP yield of each starting molecule when fully oxidized to CO2. Assume that glycolysis, the citric acid cycle, and oxidative phosphorylation are fully active.

net ATP yield from fructose 1,6‑bisphosphate: ______ ATP molecules

net ATP yield from galactose: ______ ATP molecules

net ATP yield from dihydroxyacetone phosphate: ______ ATP molecules

net ATP yield from pyruvate: ______ ATP molecules

net ATP yield from lactate: ______ ATP molecules

net ATP yield from phosphoenolpyruvate: ______ ATP molecules

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