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首页> 外文期刊>Bioscience Reports >Distinct roles for histone chaperones in the deposition of Htz1 in chromatin
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Distinct roles for histone chaperones in the deposition of Htz1 in chromatin

机译:组蛋白伴侣在染色质中Htz1沉积中的不同作用

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Histone variant Htz1 substitution for H2A plays important roles in diverse DNA transactions. Histone chaperones Chz1 and Nap1 (nucleosome assembly protein 1) are important for the deposition Htz1 into nucleosomes. In literatures, it was suggested that Chz1 is a Htz1–H2B-specific chaperone, and it is relatively unstructured in solution but it becomes structured in complex with the Htz1–H2B histone dimer. Nap1 (nucleosome assembly protein 1) can bind (H3–H4)2 tetramers, H2A–H2B dimers and Htz1–H2B dimers. Nap1 can bind H2A–H2B dimer in the cytoplasm and shuttles the dimer into the nucleus. Moreover, Nap1 functions in nucleosome assembly by competitively interacting with non-nucleosomal histone–DNA. However, the exact roles of these chaperones in assembling Htz1-containing nucleosome remain largely unknown. In this paper, we revealed that Chz1 does not show a physical interaction with chromatin. In contrast, Nap1 binds exactly at the genomic DNA that contains Htz1. Nap1 and Htz1 show a preferential interaction with AG-rich DNA sequences. Deletion of chz1 results in a significantly decreased binding of Htz1 in chromatin, whereas deletion of nap1 dramatically increases the association of Htz1 with chromatin. Furthermore, genome-wide nucleosome-mapping analysis revealed that nucleosome occupancy for Htz1p-bound genes decreases upon deleting htz1 or chz1, suggesting that Htz1 is required for nucleosome structure at the specific genome loci. All together, these results define the distinct roles for histone chaperones Chz1 and Nap1 to regulate Htz1 incorporation into chromatin.
机译:组蛋白变体Htz1替代H2A在各种DNA交易中起重要作用。组蛋白伴侣Chz1和Nap1(核小体组装蛋白1)对于将Htz1沉积到核小体中很重要。在文献中,有人建议Chz1是Htz1-H2B特有的分子伴侣,在溶液中相对非结构化,但与Htz1-H2B组蛋白二聚体形成复杂结构。 Nap1(核小体组装蛋白1)可以结合(H3-H4)2四聚体,H2A-H2B二聚体和Htz1-H2B二聚体。 Nap1可以在细胞质中结合H2A–H2B二聚体,并将二聚体穿梭到细胞核中。此外,Nap1通过与非核小体组蛋白-DNA竞争性相互作用而在核小体组装中发挥作用。但是,这些分子伴侣在组装含Htz1的核小体中的确切作用仍然未知。在本文中,我们揭示了Chz1与染色质之间没有物理相互作用。相反,Nap1恰好与包含Htz1的基因组DNA结合。 Nap1和Htz1显示与富含AG的DNA序列的优先相互作用。 chz1的删除导致染色质中Htz1的结合显着降低,而nap1的删除则显着增加了Htz1与染色质的结合。此外,全基因组的核小体映射分析显示,删除htz1或chz1后,与Htz1p结合的基因的核小体占有率降低,这表明Htz1是特定基因组基因座上核小体结构所必需的。总之,这些结果定义了组蛋白伴侣Chz1和Nap1调节Htz1掺入染色质的独特作用。

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