Rojas J R, Trievel R C, Zhou J, Mo Y, Li X, Berger S L, Allis C D, Marmorstein R
The Wistar Institute, Department of Chemistry, University of Pennsylvania, Philadelphia 19104, USA.
Nature. 1999 Sep 2;401(6748):93-8. doi: 10.1038/43487.
Gene activation is a highly regulated process that requires the coordinated action of proteins to relieve chromatin repression and to promote transcriptional activation. Nuclear histone acetyltransferase (HAT) enzymes provide a mechanistic link between chromatin destabilization and gene activation by acetylating the epsilon-amino group of specific lysine residues within the aminoterminal tails of core histones to facilitate access to DNA by transcriptional activators. Here we report the high-resolution crystal structure of the HAT domain of Tetrahymena GCN5 (tGCN5) bound with both its physiologically relevant ligands, coenzyme A (CoA) and a histone H3 peptide, and the structures of nascent tGCN5 and a tGCN5/acetyl-CoA complex. Our structural data reveal histone-binding specificity for a random-coil structure containing a G-K-X-P recognition sequence, and show that CoA is essential for reorienting the enzyme for histone binding. Catalysis appears to involve water-mediated proton extraction from the substrate lysine by a glutamic acid general base and a backbone amide that stabilizes the transition-state reaction intermediate. Comparison with related N-acetyltransferases indicates a conserved structural framework for CoA binding and catalysis, and structural variability in regions associated with substrate-specific binding.
基因激活是一个高度受调控的过程,需要蛋白质协同作用以解除染色质抑制并促进转录激活。核组蛋白乙酰转移酶(HAT)通过乙酰化核心组蛋白氨基末端尾巴内特定赖氨酸残基的ε-氨基,为染色质去稳定化和基因激活之间提供了一种机制联系,从而便于转录激活因子接近DNA。在此,我们报道了嗜热四膜虫GCN5(tGCN5)的HAT结构域与两种生理相关配体(辅酶A(CoA)和组蛋白H3肽)结合的高分辨率晶体结构,以及新生tGCN5和tGCN5/乙酰辅酶A复合物的结构。我们的结构数据揭示了对包含G-K-X-P识别序列的无规卷曲结构的组蛋白结合特异性,并表明CoA对于使酶重新定向以进行组蛋白结合至关重要。催化似乎涉及由谷氨酸通用碱和稳定过渡态反应中间体的主链酰胺从底物赖氨酸中进行水介导的质子提取。与相关N-乙酰转移酶的比较表明了CoA结合和催化的保守结构框架,以及与底物特异性结合相关区域的结构变异性。