The chemiosmotic coupling hypothesis of oxidative phosphorylation proposes that adenosine triphosphate $(ATP)$ is formed because

  • A
    a proton gradient forms across the inner membrane
  • B
    there is a change in the permeability of the inner mitochondrial membrane toward adenosine diphosphate $(ADP)$
  • C
    high energy bonds are formed in mitochondrial proteins
  • D
    $ADP$ is pumped out of the matrix into the intermembrane space.

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Similar Questions

Oxidative phosphorylation is...........

According to the chemiosmotic coupling hypothesis,$ATP$ is synthesized in oxidative phosphorylation because:

The correct sequence of electron carriers in the synthesis of $ATP$ is .........

In which stage of cellular respiration is the maximum number of $ATP$ molecules produced from $ADP$ through the complete oxidation of glucose?

What is produced at the end of oxidative phosphorylation where oxidation and phosphorylation occur simultaneously?

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