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Mus308 Processes Oxygen and Nitrogen Ethylation DNA Damage in Germ Cells of Drosophila

机译:Mus308处理果蝇生殖细胞中的氧和氮乙基化DNA损伤

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摘要

The D. melanogaster mus308 gene, highly conserved among higher eukaryotes, is implicated in the repair of cross-links and of O-ethylpyrimidine DNA damage, working in a DNA damage tolerance mechanism. However, despite its relevance, its possible role on the processing of different DNA ethylation damages is not clear. To obtain data on mutation frequency and on mutation spectra in mus308 deficient (mus308−) conditions, the ethylating agent diethyl sulfate (DES) was analysed in postmeiotic male germ cells. These data were compared with those corresponding to mus308 efficient conditions. Our results indicate that Mus308 is necessary for the processing of oxygen and N-ethylation damage, for the survival of fertilized eggs depending on the level of induced DNA damage, and for an influence of the DNA damage neighbouring sequence. These results support the role of mus308 in a tolerance mechanism linked to a translesion synthesis pathway and also to the alternative end-joinig system.
机译:D. melanogaster mus308基因在高级真核生物中高度保守,与交联和O-乙基嘧啶DNA损伤的修复有关,以DNA损伤耐受机制起作用。然而,尽管具有相关性,但尚不清楚其在处理不同DNA乙基化损伤中的可能作用。为了获得关于mus308缺陷(mus308-)条件下的突变频率和突变谱的数据,在减数分裂后的雄性生殖细胞中分析了乙基化剂硫酸二乙酯(DES)。将这些数据与对应于mus308有效条件的数据进行比较。我们的结果表明,Mus308对于氧和N-乙基化损伤的处理,受精卵的存活(取决于诱导的DNA损伤的水平)以及对DNA损伤邻近序列的影响是必需的。这些结果支持了mus308在与跨病变合成途径以及其他末端连接系统有关的耐受机制中的作用。

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