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Histone H4 H75E mutation attenuates global genomic and Rad26-independent transcription-coupled nucleotide excision repair

机译:组蛋白H4 H75E突变衰减全球基因组和RAD26无关的转录偶核苷酸切除修复

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摘要

Nucleotide excision repair (NER) consists of global genomic NER (GG-NER) and transcription coupled NER (TC-NER) subpathways. In eukaryotic cells, genomic DNA is wrapped around histone octamers (an H3-H4 tetramer and two H2A-H2B dimers) to form nucleosomes, which are well known to profoundly inhibit the access of NER proteins. Through unbiased screening of histone H4 residues in the nucleosomal LRS (loss of ribosomal DNA-silencing) domain, we identified 24 mutations that enhance or decrease UV sensitivity of Saccharomyces cerevisiae cells. The histone H4 H75E mutation, which is largely embedded in the nucleosome and interacts with histone H2B, significantly attenuates GG-NER and Rad26-independent TC-NER but does not affect TC-NER in the presence of Rad26. All the other histone H4 mutations, except for T73F and T73Y that mildly attenuate GG-NER, do not substantially affect GG-NER or TC-NER. The attenuation of GG-NER and Rad26-independent TC-NER by the H4H75E mutation is not due to decreased chromatin accessibility, impaired methylation of histone H3 K79 that is at the center of the LRS domain, or lowered expression of NER proteins. Instead, the attenuation is at least in part due to impaired recruitment of Rad4, the key lesion recognition and verification protein, to chromatin following induction of DNA lesions.
机译:核苷酸切除修复(ner)由全局基因组ner(gg-ner)和转录偶联的ner(tc-ner)细胞道组成。在真核细胞中,基因组DNA缠绕在组蛋白八氧酮(H3-H4四聚体和两个H 2 A-H2B二聚体)上以形成核心,这是众所周知的,这些核桃酸众所周知,其众所周知的抑制Ner蛋白的探测。通过在核体LRS(核糖体DNA沉默)结构域(核糖体DNA沉默的损失)结构域中的组蛋白H4残基的无偏见筛选,我们确定了24个突变,其增强或降低酿酒酵母细胞的紫外线敏感性。组蛋白H4 H75E突变在很大程度上嵌入核体中并与组蛋白H2B相互作用,显着衰减GG-NER和RAD26无依赖的TC-NER,但在RAD26存在下不会影响TC-NER。除了温和地衰减GG-NER的T73F和T73Y之外,所有其他组蛋白H4突变除了GG-NER,基本上不会影响GG-NER或TC-NER。 H4H75E突变的GG-NER和RAD26无依赖性TC-NER的衰减不是由于染色质可用性降低,组蛋白H3 K79的甲基化损伤,即在LRS结构域的中心,或降低NER蛋白的表达。相反,衰减至少部分是由于RAD4,关键病变识别和验证蛋白的募集受损,在诱导DNA病变之后染色体。

著录项

  • 来源
    《Nucleic Acids Research》 |2019年第14期|共10页
  • 作者单位

    Louisiana State Univ Sch Vet Med Dept Comparat Biomed Sci Baton Rouge LA 70803 USA;

    Louisiana State Univ Sch Vet Med Dept Comparat Biomed Sci Baton Rouge LA 70803 USA;

    Louisiana State Univ Sch Vet Med Dept Comparat Biomed Sci Baton Rouge LA 70803 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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