3.10
During the electron transport chain, high-energy electrons from NADH and FADH₂ pass through the protein complexes driving the pumping of protons across the membrane.
Electrons from NADH enter Complex I and move through the complexes, pumping approximately ten protons through complexes I, III and IV.
Electrons from FADH₂ enter Complex II, which does not pump protons. As a result, FADH2 contributes to pumping only six protons across the membrane.
The proton movement creates both a concentration gradient and an electrical gradient, collectively generating the proton motive force.
Protons flow back across the membrane through ATP synthase, a membrane-bound enzyme complex that uses the proton motive force to phosphorylate ADP into ATP — a process called chemiosmosis.
ATP synthase utilizes approximately four protons to synthesize one ATP molecule. As a result, about 2.5 ATP molecules are generated per NADH, and around 1.5 ATP molecules are produced per FADH₂.
The electron transport chain is a critical component of cellular respiration, occurring in the inner mitochondrial membrane. It facilitates the transf…
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