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癌症相关 DNA 聚合酶 ϵ 等位基因的诱变机制。

Mutagenic mechanisms of cancer-associated DNA polymerase ϵ alleles.

机构信息

The Wellcome/Cancer Research UK Gurdon Institute and Department of Biochemistry, University of Cambridge, Tennis Court Road, Cambridge CB2 1QN, UK.

The Wellcome Sanger Institute, Hinxton CB10 1HH, UK.

出版信息

Nucleic Acids Res. 2021 Apr 19;49(7):3919-3931. doi: 10.1093/nar/gkab160.

Abstract

A single amino acid residue change in the exonuclease domain of human DNA polymerase ϵ, P286R, is associated with the development of colorectal cancers, and has been shown to impart a mutator phenotype. The corresponding Pol ϵ allele in the yeast Saccharomyces cerevisiae (pol2-P301R), was found to drive greater mutagenesis than an entirely exonuclease-deficient Pol ϵ (pol2-4), an unexpected phenotype of ultra-mutagenesis. By studying the impact on mutation frequency, type, replication-strand bias, and sequence context, we show that ultra-mutagenesis is commonly observed in yeast cells carrying a range of cancer-associated Pol ϵ exonuclease domain alleles. Similarities between mutations generated by these alleles and those generated in pol2-4 cells indicate a shared mechanism of mutagenesis that yields a mutation pattern similar to cancer Signature 14. Comparison of POL2 ultra-mutator with pol2-M644G, a mutant in the polymerase domain decreasing Pol ϵ fidelity, revealed unexpected analogies in the sequence context and strand bias of mutations. Analysis of mutational patterns unique to exonuclease domain mutant cells suggests that backtracking of the polymerase, when the mismatched primer end cannot be accommodated in the proofreading domain, results in the observed insertions and T>A mutations in specific sequence contexts.

摘要

人类 DNA 聚合酶 ε(pol2-P286R)的exonuclease 结构域中的单个氨基酸残基变化与结直肠癌的发生有关,并已被证明赋予了突变速率表型。在酵母酿酒酵母(pol2-P301R)中发现,相应的 Pol ε等位基因比完全缺乏 exonuclease 的 Pol ε(pol2-4)驱动更大的突变率,这是一种出乎意料的超突变表型。通过研究对突变频率、类型、复制链偏倚和序列上下文的影响,我们表明,在携带一系列与癌症相关的 Pol ε exonuclease 结构域等位基因的酵母细胞中,普遍观察到超突变。这些等位基因产生的突变与 pol2-4 细胞产生的突变之间的相似性表明,存在一种共同的突变机制,产生类似于癌症 Signature 14 的突变模式。将 POL2 超突变体与聚合酶结构域中的突变体 pol2-M644G(降低 Pol ε保真度的突变体)进行比较,揭示了突变序列上下文和链偏倚方面的意外相似性。对exonuclease 结构域突变细胞中独特的突变模式的分析表明,当错配引物末端无法在校对域中容纳时,聚合酶的回溯会导致在特定序列上下文中观察到的插入和 T>A 突变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06af/8053093/b96a0b10be83/gkab160fig1.jpg

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