Clements Adrienne, Poux Arienne N, Lo Wan-Sheng, Pillus Lorraine, Berger Shelley L, Marmorstein Ronen
The Wistar Institute, Philadelphia, PA 19104, USA.
Mol Cell. 2003 Aug;12(2):461-73. doi: 10.1016/s1097-2765(03)00288-0.
Distinct posttranslational modifications on histones occur in specific patterns to mediate certain chromosomal events. For example, on histone H3, phosphorylation at Ser10 can enhance GCN5-mediated Lys14 acetylation to promote transcription. To gain insight into the mechanism underlying this synergism, we determined the structure of Tetrahymena GCN5 (tGCN5) and coenzyme A (CoA) bound to unmodified and Ser10-phosphorylated 19 residue histone H3 peptides (H3p19 and H3p19Pi, respectively). The tGCN5/CoA/H3p19 structure reveals that a 12 amino acid core sequence mediates extensive contacts with the protein, providing the structural basis for substrate specificity by the GCN5/PCAF family of histone acetyltransferases. Comparison with the tGCN5/CoA/H3p19Pi structure reveals that phospho-Ser10 and Thr11 mediate significant histone-protein interactions, and nucleate additional interactions distal to the phosphorylation site. Functional studies show that histone H3 Thr11 is necessary for optimal transcription at yGcn5-dependent promoters requiring Ser10 phosphorylation. Together, these studies reveal how one histone modification can modulate another to affect distinct transcriptional signals.
组蛋白上不同的翻译后修饰以特定模式发生,以介导某些染色体事件。例如,在组蛋白H3上,Ser10位点的磷酸化可以增强GCN5介导的Lys14位点的乙酰化,从而促进转录。为深入了解这种协同作用的潜在机制,我们确定了与未修饰的和Ser10磷酸化的19个残基组蛋白H3肽(分别为H3p19和H3p19Pi)结合的嗜热四膜虫GCN5(tGCN5)和辅酶A(CoA)的结构。tGCN5/CoA/H3p19结构表明,一个12个氨基酸的核心序列介导了与该蛋白的广泛接触,为组蛋白乙酰转移酶GCN5/PCAF家族的底物特异性提供了结构基础。与tGCN5/CoA/H3p19Pi结构的比较表明,磷酸化的Ser10和Thr11介导了显著的组蛋白-蛋白相互作用,并在磷酸化位点远端引发了额外的相互作用。功能研究表明,组蛋白H3的Thr11对于在需要Ser10磷酸化的yGcn5依赖性启动子处进行最佳转录是必需的。这些研究共同揭示了一种组蛋白修饰如何调节另一种修饰以影响不同的转录信号。