Oxidative phosphorylation (Homo sapiens)
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Description
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. [1]
This pathway is part the CPTAC Assay Portal.
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Bibliography
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- Porter RK, Brand MD; ''Mitochondrial proton conductance and H+/O ratio are independent of electron transport rate in isolated hepatocytes.''; Biochem J, 1995 PubMed Europe PMC Scholia
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- Dimroth P, Kaim G, Matthey U; ''Crucial role of the membrane potential for ATP synthesis by F(1)F(o) ATP synthases.''; J Exp Biol, 2000 PubMed Europe PMC Scholia
- Mitchell P; ''Keilin's respiratory chain concept and its chemiosmotic consequences.''; Science, 1979 PubMed Europe PMC Scholia
- Quinton TM, Kim S, Jin J, Kunapuli SP; ''Lipid rafts are required in Galpha(i) signaling downstream of the P2Y12 receptor during ADP-mediated platelet activation.''; J Thromb Haemost, 2005 PubMed Europe PMC Scholia
- Crane FL; ''Biochemical functions of coenzyme Q10.''; J Am Coll Nutr, 2001 PubMed Europe PMC Scholia
- Tager JM, Veldsema-Currie RD, Slater EC; ''Chemi-osmotic theory of oxidative phosphorylation.''; Nature, 1966 PubMed Europe PMC Scholia
- Schultz BE, Chan SI; ''Structures and proton-pumping strategies of mitochondrial respiratory enzymes.''; Annu Rev Biophys Biomol Struct, 2001 PubMed Europe PMC Scholia
- Rutkowski B, Swierczynski J, Slominska E, Szolkiewicz M, Smolenski RT, Marlewski M, Butto B, Rutkowski P; ''Disturbances of purine nucleotide metabolism in uremia.''; Semin Nephrol, 2004 PubMed Europe PMC Scholia
- Mitchell P, Moyle J; ''Chemiosmotic hypothesis of oxidative phosphorylation.''; Nature, 1967 PubMed Europe PMC Scholia
- Rich PR; ''The molecular machinery of Keilin's respiratory chain.''; Biochem Soc Trans, 2003 PubMed Europe PMC Scholia
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