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DNA polymerase I and the bypassing of RecA dependence of constitutive stable DNA replication in Escherichia coli rnhA mutants.

机译:DNA聚合酶I和绕过Reca依赖的大肠杆菌rnhA突变体中组成型稳定DNA复制的过程。

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摘要

In Escherichia coli rnhA mutants, several normally repressed origins (oriK sites) of DNA replication are activated. The type of DNA replication initiated from these origins, termed constitutive stable DNA replication, does not require DnaA protein or the oriC site, which are essential for normal DNA replication. It requires active RecA protein. We previously found that the lexA71(Def)::Tn5 mutation can suppress this RecA requirement and postulated that the derepression of a LexA regulon gene(s) leads to the activation of a bypass pathway, Rip (for RecA-independent process). In this study, we isolated a miniTn10spc insertion mutant that abolishes the ability of the lexA(Def) mutation to suppress the RecA requirement of constitutive stable DNA replication. Cloning and DNA sequencing analysis of the mutant revealed that the insertion occurs at the 3' end of the coding region of the polA gene, which encodes DNA polymerase I. The mutant allele, designated polA25::miniTn10spc, is expected to abolish the polymerization activity but not the 5'-->3' or 3'-->5' exonuclease activity. Thus, the Rip bypass pathway requires active DNA polymerase I. Since the lethal combination of recA(Def) and polA25::miniTn10spc could be suppressed by derepression of the LexA regulon only when DNA replication is driven by the oriC system, it was suggested that the bypass pathway has a specific requirement for DNA polymerase I at the initiation step in the absence of RecA. An accompanying paper (Y. Cao and T. Kogoma, J. Bacteriol. 175:7254-7259, 1993) describes experiments to determine which activities of DNA polymerase I are required at the initiation step and discusses possible roles for DNA polymerase in the Rip bypass pathway.
机译:在大肠杆菌rnhA突变体中,DNA复制的几个通常被抑制的起源(oriK位点)被激活。从这些起源开始的DNA复制类型,称为组成性稳定DNA复制,不需要DnaA蛋白或oriC位点,这对于正常DNA复制是必不可少的。它需要活性的RecA蛋白。我们先前发现lexA71(Def):: Tn5突变可以抑制RecA的需求,并假设LexA regulon基因的抑制可导致旁路途径Rip的激活(对于独立于RecA的过程)。在这项研究中,我们分离出一个miniTn10spc插入突变体,该突变体消除了lexA(Def)突变抑制RecA对组成型稳定DNA复制的需求的能力。对该突变体的克隆和DNA测序分析表明,该插入发生在编码DNA聚合酶I的polA基因编码区的3'端。突变等位基因命名为polA25 :: miniTn10spc,有望消除其聚合活性。但不是5'-> 3'或3'-> 5'核酸外切酶活性。因此,Rip旁路途径需要活性DNA聚合酶I。由于只有当oriC系统驱动DNA复制时,recA(Def)和polA25 :: miniTn10spc的致死组合才能被LexA regulon的阻抑所抑制。在没有RecA的情况下,旁路途径在起始步骤对DNA聚合酶I有特殊要求。随附的论文(Y. Cao和T. Kogoma,J。Bacteriol。175:7254-7259,1993)描述了确定DNA聚合酶I在启动步骤所需的活性的实验,并讨论了DNA聚合酶在Rip中的可能作用。旁路。

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