Linked from
The 49 pages that link to Oxidative phosphorylation, each with the reason it gives.
Adenosine triphosphateRelated: It generates most ATP in many oxygen-using eukaryotic cells.
ATPRelated: It supplies much of the ATP used by sustained cellular activity.
HypoxiaRelated: Low oxygen constrains this major source of cellular energy.
Anaerobic respirationRelated: Many anaerobic respiratory pathways use this process to make ATP.
PhosphateRelated: It joins inorganic phosphate to ADP during aerobic energy conversion.
Mitochondrial dysfunctionRelated: Its failure can reduce ATP output and disrupt the proton gradient.
NADHRelated: NADH oxidation supplies much of the energy that sustains this ATP-producing process.
ChemolithotrophyRelated: It converts energy from donor oxidation into ATP in many chemolithotrophs.
CoenzymeRelated: NADH and FADH₂ deliver electrons to the respiratory chain.
CatabolismRelated: It uses reducing power from catabolism to make much of the ATP in aerobic cells.
Peter D. MitchellRelated: It became the best-known application of the mechanism Mitchell proposed.