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A key role for replication factor C in DNA replication checkpoint function in fission yeast.

机译:复制因子C在裂变酵母中DNA复制检查点功能中的关键作用。

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Replication factor C (RF-C) is a five subunit DNA polymerase (Pol) delta/straightepsilon accessory factor required at the replication fork for loading the essential processivity factor PCNA onto the 3'-ends of nascent DNA strands. Here we describe the genetic analysis of the rfc2 +gene of the fission yeast Schizosaccharomyces pombe encoding a structural homologue of the budding yeast Rfc2p and human hRFC37 proteins. Deletion of the rfc2 + gene from the chromosome is lethal but does not result in the checkpoint-dependent cell cycle arrest seen in cells deleted for the gene encoding PCNA or for those genes encoding subunits of either Pol delta or Pol straightepsilon. Instead, rfc2 Delta cells proceed into mitosis with incompletely replicated DNA, indicating that the DNA replication checkpoint is inactive under these conditions. Taken together with recent results, these observations suggest a simple model in which assembly of the RF-C complex onto the 3'-end of the nascent RNA-DNA primer is the last step required for the establishment of a checkpoint-competent state.
机译:复制因子C(RF-C)是复制叉处必需的5个亚单位DNA聚合酶(Pol)δ/直ε辅助因子,用于将必需的持续合成因子PCNA加载到新生DNA链的3'末端。在这里,我们描述裂变酵母粟酒裂殖酵母rfc2 +基因的遗传分析,该基因编码出芽酵母Rfc2p和人hRFC37蛋白的结构同源物。从染色体上缺失rfc2 +基因是致命的,但不会导致在删除编码PCNA的基因或编码Pol delta或Pol直ε亚基的基因的细胞中删除的检查点依赖性细胞周期停滞。取而代之的是,rfc2 Delta细胞进入DNA有不完全复制的有丝分裂状态,这表明DNA复制检查点在这些条件下是无活性的。结合最近的结果,这些观察结果提出了一个简单的模型,其中将RF-C复合物组装到新生RNA-DNA引物的3'端是建立检查点能效状态所需的最后一步。

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