Oxidative phosphorylation is the process in which ATP is formed as a result of the transfer of electrons from NADH or FADH2 to O2 by a series of electron carriers. This process, which takes place in mitochondria, is the major source of ATP in aerobic organisms. [Source](https://www.ncbi.nlm.nih.gov/books/NBK21208/). This pathway was inferred from Homo sapiens pathway [http://www.wikipathways.org/index.php?title=Pathway:WP623&oldid=29958 WP623(r29958)] with a 75% conversion rate. f1c f85 fa1 a9c f60 c4d fe3 ca6 dc8 aac b84 4381909 PubMed Chemi-osmotic theory of oxidative phosphorylation. Nature 1966 Tager JM Veldsema-Currie RD Slater EC 15490415 PubMed Disturbances of purine nucleotide metabolism in uremia. Semin Nephrol 2004 Rutkowski B Swierczynski J Slominska E Szolkiewicz M Smolenski RT Marlewski M Butto B Rutkowski P 7654171 PubMed Mitochondrial proton conductance and H+/O ratio are independent of electron transport rate in isolated hepatocytes. Biochem J 1995 Porter RK Brand MD 15869601 PubMed Lipid rafts are required in Galpha(i) signaling downstream of the P2Y12 receptor during ADP-mediated platelet activation. J Thromb Haemost 2005 Quinton TM Kim S Jin J Kunapuli SP 14641005 PubMed The molecular machinery of Keilin's respiratory chain. Biochem Soc Trans 2003 Rich PR oxidative phosphorylation pathway PW:0001059 Pathway Ontology 11771674 PubMed Biochemical functions of coenzyme Q10. J Am Coll Nutr 2001 Crane FL 388618 PubMed Keilin's respiratory chain concept and its chemiosmotic consequences. Science 1979 Mitchell P 3881803 PubMed The structure, function and evolution of cytochromes. Prog Biophys Mol Biol 1985 Mathews FS 11340051 PubMed Structures and proton-pumping strategies of mitochondrial respiratory enzymes. Annu Rev Biophys Biomol Struct 2001 Schultz BE Chan SI 4291593 PubMed Chemiosmotic hypothesis of oxidative phosphorylation. Nature 1967 Mitchell P Moyle J 10600673 PubMed Crucial role of the membrane potential for ATP synthesis by F(1)F(o) ATP synthases. J Exp Biol 2000 Dimroth P Kaim G Matthey U