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CenH3/CID Incorporation Is Not Dependent on the Chromatin Assembly Factor CHD1 in Drosophila

机译:CenH3 / CID掺入并不依赖于果蝇中的染色质组装因子CHD1。

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摘要

CHD1 is a SNF2-related ATPase that is required for the genome-wide incorporation of variant histone H3.3 in the paternal pronucleus as well as in transcriptionally active nuclei in Drosophila embryos. The S. pombe and vertebrate orthologs of CHD1 have been implicated in the assembly of the centromeric histone H3 variant CenH3CENP-A, which occurs in a DNA replication-independent manner. Here, we examined whether CHD1 participates in the assembly of CenH3CID in Drosophila. In contrast to the findings in fission yeast and vertebrate cells, our evidence clearly argues against such a role for CHD1 in Drosophila. CHD1 does not localize to centromeres in either S2 cells or developing fly embryos. Down-regulation of CHD1 in S2 cells by RNAi reveals unchanged levels of CenH3CID at the centromeres. Most notably, ablation of functional CHD1 in Chd1 mutant fly embryos does not interfere with centromere and kinetochore assembly, as the levels and localization of CenH3CID, CENP-C and BubR1 in the mutant embryos remain similar to those seen in wild-type embryos. These results indicate that Drosophila CHD1 has no direct function in the incorporation of the centromeric H3 variant CenH3CID into chromatin. Therefore, centromeric chromatin assembly may involve different mechanisms in different organisms.
机译:CHD1是一种SNF2相关的ATPase,是变体组蛋白H3.3在果蝇胚胎的果蝇原核以及转录活性核中全基因组整合的必需条件。 CHD1的粟酒裂殖酵母和脊椎动物直系同源基因与着丝粒组蛋白H3变体CenH3CENP-A的组装有关,该组装以DNA复制无关的方式发生。在这里,我们检查了CHD1是否参与果蝇中CenH3CID的组装。与裂变酵母和脊椎动物细胞中的发现相反,我们的证据明确反对CHD1在果蝇中的这种作用。 CHD1既不定位于S2细胞也不发育中的苍蝇胚胎的着丝粒。 RNAi对S2细胞中CHD1的下调揭示了着丝粒处CenH3CID的水平未改变。最值得注意的是,在Chd1突变果蝇胚胎中去除功能性CHD1不会干扰着丝粒和动粒体组装,因为突变胚胎中CenH3CID,CENP-C和BubR1的水平和定位与野生型胚胎中的相似。这些结果表明果蝇CHD1在着丝粒H3变体CenH3CID掺入染色质中没有直接作用。因此,着丝粒染色质组装可能涉及不同生物体中的不同机制。

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