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May 21, 2009Science2,311 citationsOpen Access

ATP-Citrate Lyase Links Cellular Metabolism to Histone Acetylation

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KWKathryn E. WellenCancer Research InstituteGHGeorgia HatzivassiliouCancer Research InstituteUSUma M. SachdevaHarvard University

Key Points

  • Investigate the metabolic mechanism and enzymatic pathway responsible for supplying acetyl-CoA for histone acetylation and gene regulation in mammalian cells.
  • Assessed histone acetylation levels in mammalian cell models across varying levels of glucose availability.
  • Evaluated the requirement of adenosine triphosphate (ATP)-citrate lyase (ACL) during growth factor stimulation and cellular differentiation.
  • Histone acetylation in mammalian cells depends on ATP-citrate lyase (ACL) to convert glucose-derived citrate into acetyl-CoA.
  • ACL activity is required for histone acetylation increases during growth factor signaling, differentiation, and glucose availability fluctuations, functionally linking nutrient metabolism to gene expression.

Abstract

Histone acetylation in single-cell eukaryotes relies on acetyl coenzyme A (acetyl-CoA) synthetase enzymes that use acetate to produce acetyl-CoA. Metazoans, however, use glucose as their main carbon source and have exposure only to low concentrations of extracellular acetate. We have shown that histone acetylation in mammalian cells is dependent on adenosine triphosphate (ATP)-citrate lyase (ACL), the enzyme that converts glucose-derived citrate into acetyl-CoA. We found that ACL is required for increases in histone acetylation in response to growth factor stimulation and during differentiation, and that glucose availability can affect histone acetylation in an ACL-dependent manner. Together, these findings suggest that ACL activity is required to link growth factor-induced increases in nutrient metabolism to the regulation of histone acetylation and gene expression.

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Cite This Study

Wellen et al. (2009) studied this question.

synapsesocial.com/papers/69b31e4c52eef3fac5b3f56bhttps://doi.org/10.1126/science.1164097
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