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NGS-based analysis of base-substitution signatures created by yeast DNA polymerase eta and zeta on undamaged and abasic DNA templates in vitro

机译:基于NGS的酵母DNA聚合酶ETA和Zeta在体外未被损失和Abasic DNA模板产生的基础替代签名分析

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Abstract Translesion synthesis (TLS) is the mechanism in which DNA polymerases (TLS polymerases) bypass unrepaired template damage with high error rates. DNA polymerase η and ζ (Polη and Polζ) are major TLS polymerases that are conserved from yeast to humans. In this study, we quantified frequencies of base-substitutions by yeast Polη and Polζ on undamaged and abasic templates in vitro . For accurate quantification, we used a next generation sequencing (NGS)-based method where DNA products were directly analyzed by parallel sequencing. On undamaged templates, Polη and Polζ showed distinct base-substitution profiles, and the substitution frequencies were differently influenced by the template sequence. The base-substitution frequencies were influenced mainly by the adjacent bases both upstream and downstream of the substitution sites. Thus we present the base-substitution signatures of these polymerases in a three-base format. On templates containing abasic sites, Polη created deletions at the lesion in more than 50% of the TLS products, but the formation of the deletions was suppressed by the presence of Polζ. Polζ and Polη cooperatively facilitated the TLS reaction over an abasic site in vitro , suggesting that these two polymerases can cooperate in efficient and high fidelity TLS.
机译:摘要翻塑合成(TLS)是DNA聚合酶(TLS聚合酶)用高误差速率旁路未料模板损坏的机制。 DNA聚合酶η和α(polη和polζ)是主要的TLS聚合酶,其与酵母保守给人类。在这项研究中,我们在体外,酵母POLη和POLζ碱基取代的频率量化。为了准确定量,我们使用了基于下一代测序(NGS)的方法,其中通过并联测序直接分析DNA产物。在未损坏的模板上,POLη和POL‖显示了不同的基础替代配置文件,替代频率受到模板序列的不同影响。基准替代频率主要受到替换位点上游和下游的邻近碱基的影响。因此,我们以三种碱形式呈现这些聚合酶的基础取代鉴定。在含有Abasic Sites的模板上,POLη在超过50%的TLS产品中产生缺失,但通过POLζ的存在抑制了删除的形成。 POLζ和POL膜在体外,在脱脂部位方面协同促进TLS反应,这表明这两种聚合酶可以在有效和高保真的TL中配合。

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