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This is a simplified diagram that is designed to help us get a feel for how oxidative phosphorylation works The way i keep this separate from substrate level phosphorylation is that in the electron transport chain the hydrogen's are being oxidized. In a real mitochondrion, the matrix would be much a much larger space than it appears here, and the inner mitochondrial membrane surrounding it would contain lots of folds and tunnels.
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Substrate level phosphorylation (physical addition of phosphate to the adp and building atp) can happen during glycolysis and tca in the matrix of mitochondria. The way i understand it is that oxidation phosphorylation is the process used by the electron transport chain to generate atp Uh oh, it looks like we ran into an error
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We might start off by just getting ourselves organized and reminding ourselves that there are two kind of main ways that we produce atp in cellular respiration so, the first minor contribution comes from something called substrate level phosphorylation. The trapped energy from the citric acid cycle is then passed on to oxidative phosphorylation, where it is converted to a usable form of cellular energy, atp (adenosine triphosphate). The reduced electron carriers— nadh and fadh 2 —generated in the tca cycle will pass their electrons into the electron transport chain and, through oxidative phosphorylation, will generate most of the atp produced in cellular respiration.
