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The human histone chaperone sNASP interacts with linker and core histones through distinct mechanisms

机译:人类组蛋白伴侣sNASP通过独特的机制与连接子和核心组蛋白相互作用

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摘要

Somatic nuclear autoantigenic sperm protein (sNASP) is a human homolog of the N1/N2 family of histone chaperones. sNASP contains the domain structure characteristic of this family, which includes a large acidic patch flanked by several tetratricopeptide repeat (TPR) motifs. sNASP possesses a unique binding specificity in that it forms specific complexes with both histone H1 and histones H3/H4. Based on the binding affinities of sNASP variants to histones H1, H3.3, H4 and H3.3/H4 complexes, sNASP uses distinct structural domains to interact with linker and core histones. For example, one of the acidic patches of sNASP was essential for linker histone binding but not for core histone interactions. The fourth TPR of sNASP played a critical role in interactions with histone H3/H4 complexes, but did not influence histone H1 binding. Finally, analysis of cellular proteins demonstrated that sNASP existed in distinct complexes that contained either linker or core histones.
机译:体细胞核自身抗原精子蛋白(sNASP)是组蛋白伴侣N1 / N2家族的人类同源物。 sNASP包含该家族的域结构特征,其中包括一个大型酸性补丁,其两侧是几个四肽重复序列(TPR)主题。 sNASP具有独特的结合特异性,因为它与组蛋白H1和组蛋白H3 / H4形成特定的复合物。基于sNASP变体与组蛋白H1,H3.3,H4和H3.3 / H4复合物的结合亲和力,sNASP使用不同的结构域与接头和核心组蛋白相互作用。例如,sNASP的酸性补丁之一对于接头组蛋白的结合是必不可少的,但对于核心组蛋白的相互作用却不是。 sNASP的第四个TPR在与组蛋白H3 / H4复合物的相互作用中起关键作用,但不影响组蛋白H1的结合。最后,对细胞蛋白质的分析表明,sNASP存在于包含接头或核心组蛋白的独特复合物中。

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