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Functional mapping of the fission yeast DNA polymerase δ B-subunit Cdc1 by site-directed and random pentapeptide insertion mutagenesis

机译:通过定点和随机五肽插入诱变对裂变酵母DNA聚合酶δB亚基Cdc1的功能作图

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摘要

BackgroundDNA polymerase δ plays an essential role in chromosomal DNA replication in eukaryotic cells, being responsible for synthesising the bulk of the lagging strand. In fission yeast, Pol δ is a heterotetrameric enzyme comprising four evolutionarily well-conserved proteins: the catalytic subunit Pol3 and three smaller subunits Cdc1, Cdc27 and Cdm1. Pol3 binds directly to the B-subunit, Cdc1, which in turn binds the C-subunit, Cdc27. Human Pol δ comprises the same four subunits, and the crystal structure was recently reported of a complex of human p50 and the N-terminal domain of p66, the human orthologues of Cdc1 and Cdc27, respectively.
机译:背景DNA聚合酶δ在真核细胞的染色体DNA复制中起着至关重要的作用,负责合成大部分滞后链。在裂变酵母中,Polδ是一种异四聚酶,包含四个进化上保守的蛋白质:催化亚基Pol3和三个较小的亚基Cdc1,Cdc27和Cdm1。 Pol3直接与B亚基Cdc1结合,而Bdc亚基又与C亚基Cdc27结合。人Polδ包含相同的四个亚基,最近报道了人p50和p66的N端域(分别为Cdc1和Cdc27的人类直向同源物)的复合物的晶体结构。

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