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Evidence That the Histone Methyltransferase Dot1 Mediates Global Genomic Repair by Methylating Histone H3 on Lysine 79*

机译:组蛋白甲基转移酶Dot1通过在赖氨酸79上甲基化组蛋白H3介导全球基因组修复的证据*

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摘要

Global genomic repair (GGR) and transcription coupled repair (TCR) are two pathways of nucleotide excision repair (NER) that differ in the damage recognition step. How NER factors, especially GGR factors, access DNA damage in the chromatin of eukaryotic cells has been poorly understood. Dot1, a histone methyltransferase required for methylation of histone H3 lysine 79 (H3K79), has been shown to confer yeast cells with resistance to DNA-damaging agents and play a role in activation of DNA damage checkpoints. Here, we show that Dot1 and H3K79 methylation are required for GGR in both nucleosomal core regions and internucleosomal linker DNA, but play no role in TCR. H3K79 trimethylation contributes to but is not absolutely required for GGR, and lower levels of H3K79 methylation (mono- and dimethylation) also promote GGR. Our results also indicate that the roles of Dot1 and H3K79 methylation in GGR are not achieved by either activating DNA damage checkpoints or regulating the expression of the GGR-specific factor Rad16. Rather, the methylated H3K79 may serve as a docking site for the GGR machinery on the chromatin. Our studies identified a novel GGR-specific NER factor and unveiled the critical link between a covalent histone modification and GGR.
机译:整体基因组修复(GGR)和转录偶联修复(TCR)是核苷酸切除修复(NER)的两条途径,在损伤识别步骤中有所不同。 NER因子,尤其是GGR因子如何进入真核细胞染色质的DNA损伤,人们对此知之甚少。 Dot1是组蛋白H3赖氨酸79(H3K79)甲基化所需的组蛋白甲基转移酶,已显示赋予酵母细胞以对DNA破坏剂的抵抗力,并在激活DNA损伤检查点中发挥作用。在这里,我们表明Dot1和H3K79甲基化是核糖体核心区域和核糖体间接头DNA中GGR所必需的,但在TCR中不起作用。 H3K79三甲基化有助于GGR,但不是绝对必需的,并且较低水平的H3K79甲基化(单和二甲基化)也会促进GGR。我们的结果还表明,通过激活DNA损伤检查点或调节GGR特异性因子Rad16的表达,都无法实现Dot1和H3K79甲基化在GGR中的作用。相反,甲基化的H3K79可以充当染色质上GGR机械的对接位点。我们的研究确定了一种新型的GGR特异性NER因子,并揭示了共价组蛋白修饰与GGR之间的关键联系。

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