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首页> 外文期刊>Nucleic Acids Research >Bypass of DNA interstrand crosslinks by a Rev1-DNA polymerase zeta complex
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Bypass of DNA interstrand crosslinks by a Rev1-DNA polymerase zeta complex

机译:通过Rev1-DNA聚合酶Zeta络合物旁路DNA Interstrand交联交联

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摘要

DNA polymerase zeta (Pol zeta) and Rev1 are essential for the repair of DNA interstrand crosslink (ICL) damage. We have used yeast DNA polymerases eta, zeta and Rev1 to study translesion synthesis (TLS) past a nitrogen mustard-based interstrand crosslink (ICL) with an 8-atom linker between the crosslinked bases. The Rev1-Pol zeta complex was most efficient in complete bypass synthesis, by 2-3 fold, compared to Pol zeta alone or Pol eta. Rev1 protein, but not its catalytic activity, was required for efficient TLS. A dCMP residue was faithfully inserted across the ICL-G by Pol eta, Pol zeta, and Rev1-Pol zeta. Rev1-Pol zeta, and particularly Pol zeta alone showed a tendency to stall before the ICL, whereas Pol eta stalled just after insertion across the ICL. The stalling of Pol eta directly past the ICL is attributed to its autoinhibitory activity, caused by elongation of the short ICL-unhooked oligonucleotide (a six-mer in our study) by Pol zeta providing a barrier to further elongation of the correct primer. No stalling by Rev1-Pol zeta directly past the ICL was observed, suggesting that the proposed function of Pol zeta as an extender DNA polymerase is also required for ICL repair.
机译:DNA聚合酶ζ电(POLζ电)和修订版1是必不可少的DNA的修复间交联(ICL)的损坏。我们已经用酵母DNA聚合酶ETA,ζ电和修订版1至研究跨损伤合成(TLS)过去的基于芥菜氮间交联(ICL)与交联碱基之间的8原子连接基。的修订版1-POLζ电复合物最有效的在完全旁通合成,由2-3倍,相比之下,波尔ζ电单独或pol ETA。 REV1蛋白质,但不是其催化活性,需要有效TLS。甲的dCMP残余物忠实波尔ETA,波尔ζ电,和修订版1-POLζ电横跨ICL-G插入。 REV1-POL泽塔,尤其是波尔泽塔单独呈现的趋势来搪塞ICL之前,而波尔ETA对面的ICL插入后停滞不前。波尔ETA直接过去ICL的拖延是由于其自身抑制活性,造成由波尔泽塔提供屏障,以正确的底漆的进一步延长短期ICL-脱钩寡核苷酸(六聚体在我们的研究)的延伸。 ZETA直接过去的ICL观察由修订版1-POL没有失速,这表明也需要修理的ICL波尔ζ电的作为增量剂的DNA聚合酶所提出的功能。

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