生物
dnaB解旋酶
染色体复制控制
回复
复制前复合体
DNA复制
半保守复制
真核细胞DNA复制
复制因子C
脱氧核糖核酸
微小染色体维持
原点识别复合体
解旋酶
遗传学
细胞生物学
S相
Ter蛋白
DNA
分子生物学
基因
核糖核酸
作者
Karla A. Mettrick,Ian Grainge
摘要
Replication of chromosomal DNA must be carried out to completion in order for a cell to proliferate. However, replication forks can stall during this process for a variety of reasons, including nucleoprotein 'roadblocks' and DNA lesions. In these circumstances the replisome copying the DNA may disengage from the chromosome to allow various repair processes to restore DNA integrity and enable replication to continue. Here, we report the in vivo stability of the replication fork when it encounters a nucleoprotein blockage in Escherichia coli. Using a site-specific and reversible protein block system in conjunction with the temperature sensitive DnaC helicase loader and DnaB replicative helicase, we monitored the disappearance of the Y-shaped DNA replication fork structures using neutral-neutral 2D agarose gels. We show the replication fork collapses within 5 min of encountering the roadblock. Therefore, the stalled replication fork does not pause at a block in a stable confirmation for an extended period of time as previously postulated.
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