Concepedia

Regulation of Cellular Metabolism by Protein Lysine Acetylation

Shimin Zhao, Wei Xu, Wenqing Jiang, Wei Yu, Yan Lin, Tengfei Zhang, Jun Yao, Li Zhou, Yaxue Zeng, Hong Li,

Science · 2010 · 1.9K citations · 10 references

Abstract

Protein lysine acetylation has emerged as a key posttranslational modification in cellular regulation, in particular through the modification of histones and nuclear transcription regulators. We show that lysine acetylation is a prevalent modification in enzymes that catalyze intermediate metabolism. Virtually every enzyme in glycolysis, gluconeogenesis, the tricarboxylic acid (TCA) cycle, the urea cycle, fatty acid metabolism, and glycogen metabolism was found to be acetylated in human liver tissue. The concentration of metabolic fuels, such as glucose, amino acids, and fatty acids, influenced the acetylation status of metabolic enzymes. Acetylation activated enoyl-coenzyme A hydratase/3-hydroxyacyl-coenzyme A dehydrogenase in fatty acid oxidation and malate dehydrogenase in the TCA cycle, inhibited argininosuccinate lyase in the urea cycle, and destabilized phosphoenolpyruvate carboxykinase in gluconeogenesis. Our study reveals that acetylation plays a major role in metabolic regulation.

References

10

Lysine Acetylation Targets Protein Complexes and Co-Regulates Major Cellular Functions

Chunaram Choudhary, Chanchal Kumar, Florian Gnad et al. · Science · 2009

4K citations

Lysine Acetylation Is a Highly Abundant and Evolutionarily Conserved Modification in Escherichia Coli

Junmei Zhang, Robert W. Sprung, Jimin Pei et al. · Molecular & Cellular Proteomics · 2008

467 citations

Phosphoenolpyruvate Carboxykinase Is Necessary for the Integration of Hepatic Energy Metabolism

Pengxiang She, Masakazu Shiota, Kathy D. Shelton et al. · Molecular and Cellular Biology · 2000

+20

252 citations

Peroxisomal bifunctional enzyme deficiency.

Paul A. Watkins, W W Chen, Civonnia Harris et al. · Journal of Clinical Investigation · 1989

+11

210 citations