Q.What is oxidative phosphorylation? Name the enzyme involved in this process and its location.
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Start your 14-day free trial to unlock the full solution →Oxidative phosphorylation couples electron transport chain activity (electrons flowing to O2) to ATP synthesis by ATP synthase, positioned in the inner mitochondrial membrane.
During aerobic respiration, the reduced coenzymes NADH and FADH2, generated in glycolysis, pyruvate oxidation, and the TCA cycle, donate their electrons to a series of electron carriers embedded in the inner mitochondrial membrane, collectively called the electron transport system (ETS)/electron transport chain. As electrons pass from one carrier complex to the next and are finally accepted by molecular oxygen (forming water), the energy released at several steps of this transfer is used to actively pump protons (H+) from the matrix across the inner membrane into the intermembrane space, building up a proton gradient (electrochemical gradient) across the inner membrane. This proton gradient represents stored potential energy. When protons flow back down this gradient, from the intermembrane space into the matrix, they must pass through a specific channel-enzyme complex called ATP synthase, embedded in the inner mitochondrial membrane. The flow of protons through ATP synthase drives its rotary catalytic mechanism, which phosphorylates ADP to ATP. Because ATP synthesis here is directly coupled to (driven by) the oxidation reactions of the …
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