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Functional Conservation and Specialization among Eukaryotic Anti-Silencing Function 1 Histone Chaperones

机译:功能保护和真核抗沉默功能1组蛋白伴侣中的专业化。

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Chromatin disassembly and reassembly, mediated by histone chaperones such as anti-silencing function 1 (Asf1), are likely to accompany all nuclear processes that occur on the DNA template. In order to gain insight into the functional conservation of Asf1 across eukaryotes, we have replaced the budding yeast Asf1 protein with Drosophila Asf1 (dAsf1) or either of the two human Asf1 (hAsf1a and hAsf1b) counterparts. We found that hAsf1b is best able to rescue the growth defect of Saccharomyces cerevisiae lacking Asf1. Moreover, dAsf1 and hAsf1b but not hAsf1a can replace the role of yeast Asf1 in protecting against replicational stress and activating the PHO5 gene, while only hAsf1a can replace the role of Asf1 in protecting against double-stranded-DNA-damaging agents. Furthermore, it appears that the interaction between Asf1 and the DNA damage checkpoint protein Rad53 is not required for Asf1's role in maintaining genomic integrity. In addition to indicating the functional conservation of the Asf1 proteins across species, these studies suggest distinct roles for the two human Asf1 proteins.
机译:由组蛋白伴侣(例如抗沉默功能1(Asf1))介导的染色质分解和重组很可能伴随DNA模板上发生的所有核过程。为了深入了解Asf1在整个真核生物中的功能保守性,我们已用 Drosophila Asf1(dAsf1)或两个人类Asf1(hAsf1a和hAsf1b)对应物替代了发芽酵母Asf1蛋白。我们发现hAsf1b最能挽救缺乏Asf1的酿酒酵母的生长缺陷。此外,dAsf1和hAsf1b可以代替酵母Asf1在防止复制压力和激活 PHO5 基因中的作用,而只有hAsf1a可以代替Asf1在防止双链DNA中的作用破坏剂。此外,似乎Asf1在维持基因组完整性中的作用并不需要Asf1与DNA损伤检查点蛋白Rad53之间的相互作用。除了表明Asf1蛋白在整个物种中的功能保守性外,这些研究还提出了两种人类Asf1蛋白的不同作用。

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