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组蛋白H2A和H3的氨基末端尾巴在酿酒酵母中协调高效的碱基切除修复、DNA损伤信号传导和复制后修复。

The amino-terminal tails of histones H2A and H3 coordinate efficient base excision repair, DNA damage signaling and postreplication repair in Saccharomyces cerevisiae.

作者信息

Meas Rithy, Smerdon Michael J, Wyrick John J

机构信息

School of Molecular Biosciences, Washington State University, Pullman, WA 99164-7520, USA.

School of Molecular Biosciences, Washington State University, Pullman, WA 99164-7520, USA

出版信息

Nucleic Acids Res. 2015 May 26;43(10):4990-5001. doi: 10.1093/nar/gkv372. Epub 2015 Apr 20.

Abstract

Histone amino-terminal tails (N-tails) are required for cellular resistance to DNA damaging agents; therefore, we examined the role of histone N-tails in regulating DNA damage response pathways in Saccharomyces cerevisiae. Combinatorial deletions reveal that the H2A and H3 N-tails are important for the removal of MMS-induced DNA lesions due to their role in regulating the basal and MMS-induced expression of DNA glycosylase Mag1. Furthermore, overexpression of Mag1 in a mutant lacking the H2A and H3 N-tails rescues base excision repair (BER) activity but not MMS sensitivity. We further show that the H3 N-tail functions in the Rad9/Rad53 DNA damage signaling pathway, but this function does not appear to be the primary cause of MMS sensitivity of the double tailless mutants. Instead, epistasis analyses demonstrate that the tailless H2A/H3 phenotypes are in the RAD18 epistasis group, which regulates postreplication repair. We observed increased levels of ubiquitylated PCNA and significantly lower mutation frequency in the tailless H2A/H3 mutant, indicating a defect in postreplication repair. In summary, our data identify novel roles of the histone H2A and H3 N-tails in (i) regulating the expression of a critical BER enzyme (Mag1), (ii) supporting efficient DNA damage signaling and (iii) facilitating postreplication repair.

摘要

组蛋白氨基末端尾巴(N-尾巴)对于细胞抵抗DNA损伤剂是必需的;因此,我们研究了组蛋白N-尾巴在酿酒酵母中调节DNA损伤反应途径的作用。组合缺失表明,H2A和H3的N-尾巴对于去除MMS诱导的DNA损伤很重要,因为它们在调节DNA糖基化酶Mag1的基础表达和MMS诱导的表达中发挥作用。此外,在缺乏H2A和H3 N-尾巴的突变体中过表达Mag1可挽救碱基切除修复(BER)活性,但不能挽救MMS敏感性。我们进一步表明,H3的N-尾巴在Rad9/Rad53 DNA损伤信号通路中起作用,但该功能似乎不是双无尾突变体对MMS敏感的主要原因。相反,上位性分析表明,无尾的H2A/H3表型属于RAD18上位性组,该组调节复制后修复。我们观察到无尾的H2A/H3突变体中泛素化PCNA水平增加,突变频率显著降低,表明复制后修复存在缺陷。总之,我们的数据确定了组蛋白H2A和H3 N-尾巴在(i)调节关键BER酶(Mag1)的表达、(ii)支持有效的DNA损伤信号传导和(iii)促进复制后修复方面的新作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16fc/4446432/8d797bcc6fd3/gkv372fig1.jpg

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