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首页> 外文期刊>BMC Molecular Biology >Mapping and mutation of the conserved DNA polymerase interaction motif (DPIM) located in the C-terminal domain of fission yeast DNA polymerase δ subunit Cdc27
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Mapping and mutation of the conserved DNA polymerase interaction motif (DPIM) located in the C-terminal domain of fission yeast DNA polymerase δ subunit Cdc27

机译:位于裂变酵母DNA聚合酶δ亚基Cdc27 C端结构域的保守DNA聚合酶相互作用基序(DPIM)的定位和突变

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Background DNA polymerases α and δ play essential roles in the replication of chromosomal DNA in eukaryotic cells. DNA polymerase α (Pol α)-primase is required to prime synthesis of the leading strand and each Okazaki fragment on the lagging strand, whereas DNA polymerase δ (Pol δ) is required for the elongation stages of replication, a function it appears capable of performing on both leading and lagging strands, at least in the absence of DNA polymerase ε (Pol ε). Results Here it is shown that the catalytic subunit of Pol α, Pol1, interacts with Cdc27, one of three non-catalytic subunits of fission yeast Pol δ, both in vivo and in vitro. Pol1 interacts with the C-terminal domain of Cdc27, at a site distinct from the previously identified binding sites for Cdc1 and PCNA. Comparative protein sequence analysis identifies a protein sequence motif, called the DNA polymerase interaction motif (DPIM), in Cdc27 orthologues from a wide variety of eukaryotic species, including mammals. Mutational analysis shows that the DPIM in fission yeast Cdc27 is not required for effective DNA replication, repair or checkpoint function. Conclusions The absence of any detectable phenotypic consequences arising from mutation of the DPIM suggests that despite its evolutionary conservation, the interaction between the two polymerases mediated by this motif is a non-essential one.
机译:背景DNA聚合酶α和δ在真核细胞中染色体DNA的复制中起重要作用。需要DNA聚合酶α(Polα)-引发酶来引发前导链和落后链上的每个Okazaki片段的合成,而DNA聚合酶δ(Polδ)对于复制的延伸阶段是必需的,它的功能似乎能够至少在不存在DNA聚合酶ε(Polε)的情况下,在前导链和滞后链上均表现出色。结果在此表明,在体内和体外,Polα的催化亚基Pol1与裂变酵母Polδ的三个非催化亚基之一Cdc27相互作用。 Pol1与Cdc27的C末端结构域相互作用,该位置不同于先前确定的Cdc1和PCNA结合位点。比较性蛋白质序列分析在来自多种真核物种(包括哺乳动物)的Cdc27直向同源物中鉴定了一种蛋白质序列基序,称为DNA聚合酶相互作用基序(DPIM)。突变分析表明,裂变酵母Cdc27中的DPIM不需要有效的DNA复制,修复或检查点功能。结论由于没有DPIM突变引起的可检测的表型后果,这表明尽管有进化保守性,但由该基序介导的两种聚合酶之间的相互作用并不是必需的。

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