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Asymmetric repair of UV damage in nucleosomes imposes a DNA strand polarity on somatic mutations in skin cancer

机译:核核肉中的紫外线损伤的不对称修复在皮肤癌中的体细胞突变中施加了DNA链极性

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摘要

Nucleosomes inhibit excision repair of DNA damage caused by ultraviolet (UV) light, and it has been generally assumed that repair inhibition is equivalent on both sides of the nucleosome dyad. Here, we use genome-wide repair data to show that repair of UV damage in nucleosomes is asymmetric. In yeast, nucleosomes inhibit nucleotide excision repair (NER) of the nontranscribed strand (NTS) of genes in an asymmetric manner, with faster repair of UV damage occurring on the 5′ side of the nucleosomal DNA. Analysis of genomic repair data from UV-irradiated human cells indicates that NER activity along the NTS is also elevated on the 5′ side of nucleosomes, consistent with the repair asymmetry observed in yeast nucleosomes. Among intergenic nucleosomes, repair activity is elevated on the 5′ side of both DNA strands. The distribution of somatic mutations in nucleosomes shows the opposite asymmetry in NER-proficient skin cancers, but not in NER-deficient cancers, indicating that asymmetric repair of nucleosomal DNA imposes a strand polarity on UV mutagenesis. Somatic mutations are enriched on the relatively slow-repairing 3′ side of the nucleosomal DNA, particularly at positions where the DNA minor groove faces away from the histone octamer. Asymmetric repair and mutagenesis are likely caused by differential accessibility of the nucleosomal DNA, a consequence of its left-handed wrapping around the histone octamer.
机译:核体抑制由紫外(UV)光引起的DNA损伤的切除修复,并且通常假设修复抑制在核小体Dyad的两侧等同于。在这里,我们使用基因组维修数据来表明核心损伤的修复核心是不对称的。在酵母中,核体以不对称的方式抑制非筛选链(NTS)的非筛选链(NTS)的核苷酸切除修复(ner),在核癌DNA的5'侧发生紫外线损伤的修复。来自紫外线辐照人体细胞的基因组修复数据分析表明,沿NTS的NER活性也升高在核心的5'侧,与酵母核肉中观察到的修复不对称一致。在代核核核中,修复活性在两个DNA链的5'侧升高。核心中体细胞突变的分布显示了Ner易细胞皮肤癌的相反不对称性,但不在缺乏缺陷的癌症中,表明核体DNA的不对称修复施加在UV诱变上的链极性。体细胞突变富集在核体DNA的相对缓慢的修复3'侧,特别是在DNA较小槽面向远离组蛋白八寡卷的位置。不对称的修复和诱变可能是核致组DNA的差异可达性引起的,其左旋包裹在组蛋白八寡卷周围的结果。

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