4.8 Article

Acetylation Stabilizes ATP-Citrate Lyase to Promote Lipid Biosynthesis and Tumor Growth

期刊

MOLECULAR CELL
卷 51, 期 4, 页码 506-518

出版社

CELL PRESS
DOI: 10.1016/j.molcel.2013.07.002

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资金

  1. 973 grants [2011CB910600, 2009CB918401]
  2. NSFC [31071192, 81225016, 81071744]
  3. Shanghai Key basic Research Program [12JC1401100]
  4. 100 Talents Program of Shanghai Health [XBR2011041]
  5. Dawn Program of Shanghai Education Commission
  6. Program for the Shanghai Outstanding Academic Leader [13XD1400600]
  7. 985 Program
  8. Shanghai Leading Academic Discipline Project [B110]
  9. 973 grant [2012CB910101]
  10. NIH
  11. [NCET-09-0315]

向作者/读者索取更多资源

Increased fatty acid synthesis is required to meet the demand for membrane expansion of rapidly growing cells. ATP-citrate lyase (ACLY) is upregulated or activated in several types of cancer, and inhibition of ACLY arrests proliferation of cancer cells. Here we show that ACLY is acetylated at lysine residues 540, 546, and 554 (3K). Acetylation at these three lysine residues is stimulated by P300/calcium-binding protein (CBP)-associated factor (PCAF) acetyltransferase under high glucose and increases ACLY stability by blocking its ubiquitylation and degradation. Conversely, the protein deacetylase sirtuin 2 (SIRT2) deacetylates and destabilizes ACLY. Substitution of 3K abolishes ACLY ubiquitylation and promotes de novo lipid synthesis, cell proliferation, and tumor growth. Importantly, 3K acetylation of ACLY is increased in human lung cancers. Our study reveals a crosstalk between acetylation and ubiquitylation by competing for the same lysine residues in the regulation of fatty acid synthesis and cell growth in response to glucose.

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