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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Dpb2p, a noncatalytic subunit of DNA polymerase epsilon, contributes to the fidelity of DNA replication in Saccharomyces cerevisiae.
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Dpb2p, a noncatalytic subunit of DNA polymerase epsilon, contributes to the fidelity of DNA replication in Saccharomyces cerevisiae.

机译:Dpb2p是DNA聚合酶epsilon的非催化亚基,有助于酿酒酵母中DNA复制的保真度。

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摘要

Most replicases are multi-subunit complexes. DNA polymerase epsilon from Saccharomyces cerevisiae is composed of four subunits: Pol2p, Dpb2p, Dpb3p, and Dpb4p. Pol2p and Dpb2p are essential. To investigate a possible role for the Dpb2p subunit in maintaining the fidelity of DNA replication, we isolated temperature-sensitive mutants in the DPB2 gene. Several of the newly isolated dpb2 alleles are strong mutators, exhibiting mutation rates equivalent to pol2 mutants defective in the 3' --> 5' proofreading exonuclease (pol2-4) or to mutants defective in mismatch repair (msh6). The dpb2 pol2-4 and dpb2 msh6 double mutants show a synergistic increase in mutation rate, indicating that the mutations arising in the dpb2 mutants are due to DNA replication errors normally corrected by mismatch repair. The dpb2 mutations decrease the affinity of Dpb2p for the Pol2p subunit as measured by two-hybrid analysis, providing a possible mechanistic explanation for the loss of high-fidelity synthesis. Our results show that DNA polymerase subunits other than those housing the DNA polymerase and 3' --> 5' exonuclease are essential in controlling the level of spontaneous mutagenesis and genetic stability in yeast cells.
机译:大多数复制品是多亚基复合物。来自酿酒酵母的DNA聚合酶ε由四个亚基组成:Pol2p,Dpb2p,Dpb3p和Dpb4p。 Pol2p和Dpb2p是必不可少的。为了研究Dpb2p亚基在维持DNA复制保真度方面的可能作用,我们在DPB2基因中分离了温度敏感突变体。几个新分离的dpb2等位基因是强突变体,其突变率与3'-> 5'校对核酸外切酶(pol2-4)缺陷的pol2突变体或错配修复缺陷的突变体(msh6)相同。 dpb2 pol2-4和dpb2 msh6双重突变体显示出突变率的协同增加,表明dpb2突变体中产生的突变是由于DNA复制错误所致,通常可通过错配修复来纠正。 dpb2突变降低了Dpb2p对Pol2p亚基的亲和力(通过两次杂交分析测量),为丢失高保真度合成提供了可能的机理解释。我们的结果表明,除了那些容纳DNA聚合酶和3'-> 5'核酸外切酶的亚基以外的DNA聚合酶亚基对于控制酵母细胞中自发诱变的水平和遗传稳定性至关重要。

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