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Structural basis for the recognition of histone H4 by the histone-chaperone RbAp46

机译:组蛋白伴侣RbAp46识别组蛋白H4的结构基础

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RbAp46 and RbAp48 (pRB-associated proteins p46 and p48, also known as RBBP7 and RBBP4, respectively) are highly homologous histone chaperones that play key roles in establishing and maintaining chromatin structure. We report here the crystal structure of human RbAp46 bound to histone H4. RbAp46 folds into a seven-bladed beta propeller structure and binds histone H4 in a groove formed between an N-terminal alpha helix and an extended loop inserted into blade six. Surprisingly, histone H4 adopts a different conformation when interacting with RbAp46 than it does in either the nucleosome or in the complex with ASF1, another histone chaperone. Our structural and biochemical results suggest that when a histone H3/H4 dimer (or tetramer) binds to RbAp46 or RbAp48, helix 1 of histone H4 unfolds to interact with the histone chaperone. We discuss the implications of our findings for the assembly and function of RbAp46 and RbAp48 complexes.
机译:RbAp46和RbAp48(与pRB相关的蛋白p46和p48,也分别称为RBBP7和RBBP4)是高度同源的组蛋白伴侣,在建立和维持染色质结构中起关键作用。我们在这里报告绑定到组蛋白H4的人类RbAp46的晶体结构。 RbAp46折叠成7叶片的β螺旋桨结构,并将组蛋白H4结合在N末端α螺旋和插入叶片6的延伸环之间形成的凹槽中。出乎意料的是,与RbAp46相互作用时,组蛋白H4与在核小体或与另一组蛋白伴侣蛋白ASF1的复合物中所采用的构象不同。我们的结构和生化结果表明,当组蛋白H3 / H4二聚体(或四聚体)与RbAp46或RbAp48结合时,组蛋白H4的螺旋1展开以与组蛋白伴侣发生相互作用。我们讨论了我们的发现对RbAp46和RbAp48复合物的组装和功能的影响。

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