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首页> 外文期刊>Journal of proteome research >C-terminal phosphorylation of murine testis-specific histone H1t in elongating spermatids
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C-terminal phosphorylation of murine testis-specific histone H1t in elongating spermatids

机译:延长精子细胞中小鼠睾丸特异组蛋白H1t的C末端磷酸化

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摘要

Previous studies gave differing results as to whether the testis-specific histone H1t was phosphorylated during rodent spermatogenesis. We show here that histones extracted from germ cell populations enriched with spermatids at different stages of development in rat testes reveal an electrophoretic shift in the position of H1t to slower mobilities in elongating spermatids as compared to that from preceding stages. Alkaline phosphatase treatment and radioactive labeling with P-32 demonstrated that the electrophoretic shift is due to phosphorylation. Mass spectrometric analysis of histone H1t purified from sexually mature mice and rat testes confirmed the occurrence of singly, doubly, and triply phosphorylated species, with phosphorylation sites predominantly found at the C-terminal end of the molecule. Furthermore, using collision-activated dissociation (CAD) and electron transfer dissociation (ETD), we have been able to identify the major phosphorylation sites. These include a new, previously unidentified putative H1t-specific cdc2 phosphorylation site in linker histones. The presence of phosphorylation at the C-terminal end of H1t and the timing of its appearance suggest that this posttranslational modification is involved in the reduction of H1t binding strength to DNA. It is proposed that this could participate in the opening of the chromatin fiber in preparation for histone displacement by transition proteins in the next phase of spermiogenesis.
机译:先前的研究对于在啮齿动物的精子发生过程中睾丸特异性组蛋白H1t是否被磷酸化给出了不同的结果。我们在这里显示,从大鼠睾丸发育的不同阶段富集于精子细胞的生殖细胞群中提取的组蛋白显示,与先前阶段相比,H1t位置的电泳迁移延长了精子细胞迁移的速度。碱性磷酸酶处理和P-32放射性标记表明,电泳位移是由于磷酸化引起的。从性成熟小鼠和大鼠睾丸中纯化的组蛋白H1t的质谱分析证实了单,双和三重磷酸化物质的出现,磷酸化位点主要位于分子的C末端。此外,使用碰撞激活解离(CAD)和电子转移解离(ETD),我们已经能够鉴定出主要的磷酸化位点。这些在接头组蛋白中包括一个新的,以前未知的H1t特异性cdc2磷酸化位点。 H1t C末端磷酸化的存在及其出现的时间表明,这种翻译后修饰涉及H1t与DNA的结合强度的降低。提出这可能参与染色质纤维的开放,以准备在精子发生的下一阶段中由过渡蛋白进行组蛋白置换。

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