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C-terminal acidic domain of histone chaperone human NAP1 is an efficient binding assistant for histone H2A-H2B, but not H3-H4

机译:组蛋白伴侣人NAP1的C末端酸性结构域是组蛋白H2A-H2B的有效结合助手,但不是H3-H4的有效结合助手

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摘要

Nucleosome assembly protein 1 (NAP1) binds both the (H3-H4)2 tetramer and two H2A-H2B dimers, mediating their sequential deposition on DNA. NAP1 contains a C-terminal acidic domain (CTAD) and a core domain that promotes dimer formation. Here, we have investigated the roles of the core domain and CTAD of human NAP1 in binding to H2A-H2B and H3-H4 by isothermal calorimetry and native mass spectrometry and compared them with the roles of yeast NAP1. We show that the hNAP1 and yNAP1 dimers bind H2A-H2B by two different modes: a strong endothermic interaction and a weak exothermic interaction. A mutant hNAP1, but not yNAP1, dimer lacking CTAD loses the exothermic interaction and shows greatly reduced H2A-H2B binding activity. The isolated CTAD of hNAP1 binds H2A-H2B only exothermically with relatively stronger binding as compared with the exothermic interaction observed for the full-length hNAP1 dimer. Thus, the two CTADs in the hNAP1 dimer seem to provide binding assistance for the strong endothermic interaction of the core domain with H2A-H2B. By contrast, in the relatively weaker binding of hNAP1 to H3-H4 as compared with yNAP1, CTAD of hNAP1 has no significant role. To our knowledge, this is the first distinct role identified for the hNAP1 CTAD.
机译:核小体组装蛋白1(NAP1)结合(H3-H4)2四聚体和两个H2A-H2B二聚体,介导它们在DNA上的顺序沉积。 NAP1包含一个C端酸性结构域(CTAD)和一个促进二聚体形成的核心结构域。在这里,我们通过等温量热法和天然质谱法研究了人NAP1的核心域和CTAD在与H2A-H2B和H3-H4结合中的作用,并将其与酵母NAP1的作用进行了比较。我们显示,hNAP1和yNAP1二聚体通过两种不同的模式结合H2A-H2B:强吸热相互作用和弱放热相互作用。缺少CTAD的突变体hNAP1但不是yNAP1二聚体失去了放热相互作用,并显示出大大降低的H2A-H2B结合活性。与对全长hNAP1二聚体观察到的放热相互作用相比,hNAP1的分离的CTAD仅以放热方式结合H2A-H2B,具有相对更强的结合。因此,hNAP1二聚体中的两个CTAD似乎为核心结构域与H2A-H2B的强吸热相互作用提供了结合帮助。相反,与yNAP1相比,在hNAP1与H3-H4的结合相对较弱的情况下,hNAP1的CTAD没有显着作用。据我们所知,这是为hNAP1 CTAD识别的第一个独特角色。

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