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Acetylation of metabolic enzymes coordinates carbon source utilization and metabolic flux.


ABSTRACT: Lysine acetylation regulates many eukaryotic cellular processes, but its function in prokaryotes is largely unknown. We demonstrated that central metabolism enzymes in Salmonella were acetylated extensively and differentially in response to different carbon sources, concomitantly with changes in cell growth and metabolic flux. The relative activities of key enzymes controlling the direction of glycolysis versus gluconeogenesis and the branching between citrate cycle and glyoxylate bypass were all regulated by acetylation. This modulation is mainly controlled by a pair of lysine acetyltransferase and deacetylase, whose expressions are coordinated with growth status. Reversible acetylation of metabolic enzymes ensure that cells respond environmental changes via promptly sensing cellular energy status and flexibly altering reaction rates or directions. It represents a metabolic regulatory mechanism conserved from bacteria to mammals.

SUBMITTER: Wang Q 

PROVIDER: S-EPMC4183141 | biostudies-literature | 2010 Feb

REPOSITORIES: biostudies-literature

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Acetylation of metabolic enzymes coordinates carbon source utilization and metabolic flux.

Wang Qijun Q   Zhang Yakun Y   Yang Chen C   Xiong Hui H   Lin Yan Y   Yao Jun J   Li Hong H   Xie Lu L   Zhao Wei W   Yao Yufeng Y   Ning Zhi-Bin ZB   Zeng Rong R   Xiong Yue Y   Guan Kun-Liang KL   Zhao Shimin S   Zhao Guo-Ping GP  

Science (New York, N.Y.) 20100201 5968


Lysine acetylation regulates many eukaryotic cellular processes, but its function in prokaryotes is largely unknown. We demonstrated that central metabolism enzymes in Salmonella were acetylated extensively and differentially in response to different carbon sources, concomitantly with changes in cell growth and metabolic flux. The relative activities of key enzymes controlling the direction of glycolysis versus gluconeogenesis and the branching between citrate cycle and glyoxylate bypass were al  ...[more]

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