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首页> 外文期刊>Angewandte Chemie >Chemical Synthesis of Phosphorylated Histone H2A at Tyr57 Reveals Insight into the Inhibition Mode of the SAGA Deubiquitinating Module
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Chemical Synthesis of Phosphorylated Histone H2A at Tyr57 Reveals Insight into the Inhibition Mode of the SAGA Deubiquitinating Module

机译:Tyr57的磷酸化组蛋白H2A的化学合成揭示了SAGA去泛素化模块的抑制模式的见解。

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摘要

Monoubiquitination of histone H2B plays a central role in transcription activation and is required for downstream histone-methylation events. Deubiquitination of H2B by the Spt-Ada-Gcn5 acetyltransferase (SAGA) coactivator complex is regulated by a recently discovered histone mark, phosphorylated H2AY57 (H2AY57p), which inhibits deubiquitination of H2B by the SAGA complex as well as restricting demethylation of H3 and increasing its acetylation. Evidence for the effect of H2AY57p, however, was indirect and was investigated in vivo by monitoring the effects of chemical inhibition of Tyr kinase CK2 or by mutating the phosphorylation site. We applied the total chemical synthesis of proteins to prepare H2AY57p efficiently and study the molecular details of this regulation. This analogue, together with semisynthetically prepared ubiquitinated H2B, enabled us to provide direct evidence for the cross-talk between those two marks and the inhibition of SAGA activity by H2AY57p.
机译:组蛋白H2B的单泛素化在转录激活中起着核心作用,并且是下游组蛋白甲基化事件所必需的。 Spt-Ada-Gcn5乙酰转移酶(SAGA)共激活物复合物对H2B的去泛素化作用受到最近发现的组蛋白标记磷酸化的H2AY57(H2AY57p)的调控,该蛋白可抑制SAGA络合物对H2B的去泛素化作用,并限制H3的去甲基化并增加其H3的去甲基化乙酰化。然而,H2AY57p作用的证据是间接的,并且通过监测Tyr激酶CK2的化学抑制作用或通过磷酸化位点的突变在体内进行了研究。我们应用蛋白质的总化学合成方法有效地制备了H2AY57p,并研究了该调控的分子细节。该类似物与半合成制备的遍在蛋白化的H2B一起,使我们能够为这两个标记之间的串扰以及H2AY57p对SAGA活性的抑制提供直接证据。

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