乙酰化
生物
SAP30型
组蛋白
细胞生物学
组蛋白H2A
癌症研究
生物化学
DNA
基因
作者
Joyce V. Lee,Alessandro Carrer,Supriya Shah,Nathaniel W. Snyder,Shuanzeng Wei,Sriram Venneti,Andrew J. Worth,Zuo‐Fei Yuan,Hee‐Woong Lim,Shichong Liu,Ellen Jackson,Nicole M. Aiello,Naomi B. Haas,Timothy R. Rebbeck,Alexander R. Judkins,Kyoung‐Jae Won,Lewis A. Chodosh,Benjamin A. García,Ben Z. Stanger,Michael D. Feldman
出处
期刊:Cell Metabolism
[Cell Press]
日期:2014-07-03
卷期号:20 (2): 306-319
被引量:576
标识
DOI:10.1016/j.cmet.2014.06.004
摘要
Summary Histone acetylation plays important roles in gene regulation, DNA replication, and the response to DNA damage, and it is frequently deregulated in tumors. We postulated that tumor cell histone acetylation levels are determined in part by changes in acetyl coenzyme A (acetyl-CoA) availability mediated by oncogenic metabolic reprogramming. Here, we demonstrate that acetyl-CoA is dynamically regulated by glucose availability in cancer cells and that the ratio of acetyl-CoA:coenzyme A within the nucleus modulates global histone acetylation levels. In vivo, expression of oncogenic Kras or Akt stimulates histone acetylation changes that precede tumor development. Furthermore, we show that Akt's effects on histone acetylation are mediated through the metabolic enzyme ATP-citrate lyase and that pAkt(Ser473) levels correlate significantly with histone acetylation marks in human gliomas and prostate tumors. The data implicate acetyl-CoA metabolism as a key determinant of histone acetylation levels in cancer cells.
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