Substrate-level phosphorylation

Substrate-level phosphorylation exemplified with the conversion of ADP to ATP

Substrate-level phosphorylation is a metabolism reaction that results in the production of ATP or GTP supported by the energy released from another high-energy bond that leads to phosphorylation of ADP or GDP to ATP or GTP (note that the reaction catalyzed by creatine kinase is not considered as "substrate-level phosphorylation"). This process uses some of the released chemical energy, the Gibbs free energy, to transfer a phosphoryl (PO3) group to ADP or GDP. Occurs in glycolysis and in the citric acid cycle.[1]

Unlike oxidative phosphorylation, oxidation and phosphorylation are not coupled in the process of substrate-level phosphorylation, and reactive intermediates are most often gained in the course of oxidation processes in catabolism. Most ATP is generated by oxidative phosphorylation in aerobic or anaerobic respiration while substrate-level phosphorylation provides a quicker, less efficient source of ATP, independent of external electron acceptors. This is the case in human erythrocytes, which have no mitochondria, and in oxygen-depleted muscle.

  1. ^ Freeman, Scott (2020). Biological science. Quillin, Kim, Allison, Lizabeth A., 1958-, Black, Michael (Lecturer in biology), Podgorski, Greg, Taylor, Emily (Lecturer in biological sciences), Carmichael, Jeff. (Seventh ed.). Hoboken, NJ. ISBN 978-0-13-467832-0. OCLC 1043972098.{{cite book}}: CS1 maint: location missing publisher (link)

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