首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Ddc1-Mec3-Rad17 Sliding Clamp Regulates Histone-Histone Chaperone Interactions and DNA Replication-coupled Nucleosome Assembly in Budding Yeast
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The Ddc1-Mec3-Rad17 Sliding Clamp Regulates Histone-Histone Chaperone Interactions and DNA Replication-coupled Nucleosome Assembly in Budding Yeast

机译:Ddc1-Mec3-Rad17滑动夹调节发芽酵母中的组蛋白-组蛋白伴侣相互作用和DNA复制耦合核小体组装。

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摘要

The maintenance of genome integrity is regulated in part by chromatin structure and factors involved in the DNA damage response pathway. Nucleosome assembly is a highly regulated process that restores chromatin structure after DNA replication, DNA repair, and gene transcription. During S phase the histone chaperones Asf1, CAF-1, and Rtt106 coordinate to deposit newly synthesized histones H3-H4 onto replicated DNA in budding yeast. Here we describe synthetic genetic interactions between RTT106 and the DDC1-MEC3-RAD17 (9-1-1) complex, a sliding clamp functioning in the S phase DNA damage and replication checkpoint response, upon treatment with DNA damaging agents. The DNA damage sensitivity of rad17Δ rtt106Δ cells depends on the function of Rtt106 in nucleosome assembly. Epistasis analysis reveals that 9-1-1 complex components interact with multiple DNA replication-coupled nucleosome assembly factors, including Rtt106, CAF-1, and lysine residues of H3-H4. Furthermore, rad17Δ cells exhibit defects in the deposition of newly synthesized H3-H4 onto replicated DNA. Finally, deletion of RAD17 results in increased association of Asf1 with checkpoint kinase Rad53, which may lead to the observed reduction in Asf1-H3 interaction in rad17Δ mutant cells. In addition, we observed that the interaction between histone H3-H4 with histone chaperone CAF-1 or Rtt106 increases in cells lacking Rad17. These results support the idea that the 9-1-1 checkpoint protein regulates DNA replication-coupled nucleosome assembly in part through regulating histone-histone chaperone interactions.
机译:基因组完整性的维持部分受染色质结构和DNA损伤反应途径中所涉及因素的调节。核小体组装是一个高度受控的过程,可在DNA复制,DNA修复和基因转录后恢复染色质结构。在S期,组蛋白分子伴侣Asf1,CAF-1和Rtt106进行协调,以将新合成的组蛋白H3-H4沉积到发芽酵母中复制的DNA上。在这里,我们描述了RTT106与DDC1-MEC3-RAD17(9-1-1)复合物之间的合成遗传相互作用,该复合物在用DNA破坏剂处理后在S期DNA损伤和复制检查点响应中起作用。 rad17Δrtt106Δ细胞的DNA损伤敏感性取决于Rtt106在核小体装配中的功能。上位性分析显示9-1-1复杂成分与多个DNA复制偶联的核小体装配因子相互作用,包括Rtt106,CAF-1和H3-H4的赖氨酸残基。此外,rad17Δ细胞在新合成的H3-H4沉积到复制的DNA上显示出缺陷。最后,删除RAD17导致Asf1与检查点激酶Rad53的结合增加,这可能导致在rad17Δ突变细胞中Asf1-H3相互作用降低。此外,我们观察到在缺少Rad17的细胞中,组蛋白H3-H4与组蛋白伴侣CAF-1或Rtt106之间的相互作用增加。这些结果支持9-1-1检查点蛋白部分地通过调节组蛋白-组蛋白伴侣分子相互作用来调节DNA复制-偶联的核小体装配的想法。

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