作者
Kirk G Tanner, Raymond C Trievel, Min-Hao Kuo, Robyn M Howard, Shelley L Berger, C David Allis, Ronen Marmorstein, John M Denu
发表日期
1999/6/25
期刊
Journal of Biological Chemistry
卷号
274
期号
26
页码范围
18157-18160
出版商
Elsevier
简介
Within chromatin, reversible acetylation of core histones is critical for transcriptional activation of eukaryotic target genes. The recent identification of intrinsic histone acetyltransferase (HAT) catalytic activity from a number of transcriptional co-activators (including yeast GCN5, p300/CBP, P/CAF, and TAFII250), has underscored the importance of protein acetylation in transcriptional control. The GCN5 family is the prototype for a diverse group of at least four distinct human HATs families. Although there is now a clear link between in vivo HAT catalytic activity and gene activation, little is known about the molecular mechanisms of histone acetylation. Herein, we report the first detailed biochemical study that probes the catalytic mechanism and the function of invariant glutamic acid 173 within the GCN5 family of HATs. Our results suggest that the HAT reaction involves the formation of a ternary complex (histones, acetyl …
引用总数
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