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The return of the protons back into the matrix by diffusion is coupled to ATP production.In the Electron transport system ETS the flow of electron leads to the transport of protons H+ from the matrix across the inner membrane to its outer side. Proton translocation occurs at 3 sites. This results in higher proton concentration outside the inner membrane than in the matrix. The inner membrane of mitochondria is virtually impermeable to protons and thus prevent the return of protons into the matrix. How ever, the F0 particle of F0 -- F1 particles permits the return of H+ moves down the gradient, energy is released. The energy rotates F1 particle. Some amount of energy of this rotating F1 particle helps in combining ADP + ip. Leading to the formation of ATP. The enerfy from 3H+ moving down the potential gradient is sufficient to form one ATP molecule. Thus one NADH mol. Which adds 10H+ to the concentration gradient accounts for synthesis of 3 ATP mol and FADH2 adds 6H+ to the concentration gradient, they account for the synthesis of 2 ATP molecules each.
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