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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Defect of Dpb2p, a noncatalytic subunit of DNA polymerase e{open}, promotes error prone replication of undamaged chromosomal DNA in Saccharomyces cerevisiae
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Defect of Dpb2p, a noncatalytic subunit of DNA polymerase e{open}, promotes error prone replication of undamaged chromosomal DNA in Saccharomyces cerevisiae

机译:DNA聚合酶e {open}的非催化亚基Dpb2p的缺陷促进了酿酒酵母中易损染色体DNA的易错复制。

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摘要

The Saccharomyces cerevisiae DNA polymerase epsilon holoenzyme (Pol e{open} HE) is composed of four subunits: Pol2p, Dpb2p, Dpb3p and Dpb4p. The biological functions of Pol2p, the catalytic subunit of Pol e{open}, are subject of active investigation, while the role of the other three, noncatalytic subunits, is not well defined. We showed previously that mutations in Dpb2p, a noncatalytic but essential subunit of Pol e{open} HE, influence the fidelity of DNA replication in yeast cells. The strength of the mutator phenotype due to the different dpb2 alleles was inversely proportional to the strength of protein-protein interactions between Pol2p and the mutated forms of Dpb2p. To understand better the mechanisms of the contribution of Dpb2p to the controlling of the level of spontaneous mutagenesis we undertook here a further genetic analysis of the mutator phenotype observed in dpb2 mutants. We demonstrate that the presence of mutated forms of Dpb2p in the cell not only influences the intrinsic fidelity of Pol e{open} but also facilitates more frequent participation of error-prone DNA polymerase zeta (Pol ζ) in DNA replication. The obtained results suggest that the structural integrity of Pol e{open} HE is a crucial contributor to accurate chromosomal DNA replication and, when compromised, favors participation of error prone DNA Pol ζ in this process.
机译:酿酒酵母DNA聚合酶ε全酶由四个亚基组成:Pol2p,Dpb2p,Dpb3p和Dpb4p。 Pol 2p(Pol e {open}的催化亚基)的生物学功能正在积极研究中,而其他三个非催化亚基的作用尚不清楚。我们以前表明,Dpb2p(Pol e {open} HE的非催化但必不可少的亚基)中的突变会影响酵母细胞中DNA复制的保真度。由于不同的dpb2等位基因导致的突变体表型强度与Pol2p和Dpb2p突变形式之间的蛋白质-蛋白质相互作用强度成反比。为了更好地理解Dpb2p对自发诱变水平的控制机制,我们在这里对在dpb2突变体中观察到的突变体表型进行了进一步的遗传分析。我们证明细胞中Dpb2p突变形式的存在不仅影响Pol e {open}的固有保真度,而且还促进了容易出错的DNA聚合酶zeta(Polζ)更频繁地参与DNA复制。获得的结果表明,Pol e {open} HE的结构完整性是准确进行染色体DNA复制的关键因素,如果受到损害,则有利于容易出错的DNA Polζ参与该过程。

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