Acetate Production from Glucose and Coupling to Mitochondrial Metabolism in Mammals
Author(s) -
Xiaojing Liu,
Daniel E. Cooper,
Ahmad A. Cluntun,
Marc O. Warmoes,
Steven Zhao,
Michael A. Reid,
Juan Liu,
Peder J. Lund,
Mariana Lopes,
Benjamin A. García,
Kathryn E. Wellen,
David G. Kirsch,
Jason W. Locasale
Publication year - 2018
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2018.08.040
Subject(s) - biology , biochemistry , citric acid cycle , metabolism , acetyl coa , glycolysis , lipogenesis , atp citrate lyase , citrate synthase , mitochondrion , pyruvate dehydrogenase complex , enzyme
Acetate is a major nutrient that supports acetyl-coenzyme A (Ac-CoA) metabolism and thus lipogenesis and protein acetylation. However, its source is unclear. Here, we report that pyruvate, the end product of glycolysis and key node in central carbon metabolism, quantitatively generates acetate in mammals. This phenomenon becomes more pronounced in the context of nutritional excess, such as during hyperactive glucose metabolism. Conversion of pyruvate to acetate occurs through two mechanisms: (1) coupling to reactive oxygen species (ROS) and (2) neomorphic enzyme activity from keto acid dehydrogenases that enable function as pyruvate decarboxylases. Further, we demonstrate that de novo acetate production sustains Ac-CoA pools and cell proliferation in limited metabolic environments, such as during mitochondrial dysfunction or ATP citrate lyase (ACLY) deficiency. By virtue of de novo acetate production being coupled to mitochondrial metabolism, there are numerous possible regulatory mechanisms and links to pathophysiology.
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