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Transcriptional control for initiation of chromosomal replication in Escherichia coli: fluctuation of the level of origin transcription ensures timely initiation.

机译:在大肠杆菌中启动染色体复制的转录控制:起源转录水平的波动确保及时启动。

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BACKGROUND: During the cell cycle, the initiation of chromosomal replication is strictly controlled. In Escherichia coli, the initiator DnaA and the replication origin oriC are major targets for this regulation. Here, we assessed the role of transcription of the mioC gene, which reads through the adjacent oriC region. This mioC-oriC transcription is regulated in coordination with the replication cycle so that it is activated after initiation and repressed before initiation. RESULTS: We isolated a strain bearing a mioC promoter mutation that causes constitutive mioC-oriC transcription from the chromosome. A quantitative S1 nuclease assay indicated that in this mutant, the level of transcription does not fluctuate. Introduction of this mutation suppressed the growth defect of an overinitiation-type dnaAcos mutant, and severely inhibited the growth of initiation-defective dnaA mutants at semipermissive temperatures in a dnaA allele-specific manner. These results suggest that mioC-oriC transcription inhibits initiation at oriC. Indeed, flow cytometry analysis and quantification of DNA replication in synchronized cultures revealed that the mioC promoter mutation alters the control of the initiation of chromosomal replication, for instance by delaying replication within the cell cycle. CONCLUSIONS: These results suggest that the transcriptional regulation of the mioC gene is required for cell cycle-coordinated initiation of chromosomal replication.
机译:背景:在细胞周期中,染色体复制的启动受到严格控制。在大肠杆菌中,启动子DnaA和复制起点oriC是该法规的主要目标。在这里,我们评估了mioC基因转录的作用,该基因通过相邻的oriC区读取。此mioC-oriC转录与复制周期协同调节,因此在启动后被激活,在启动前被抑制。结果:我们分离出了一个带有mioC启动子突变的菌株,该突变导致染色体上的组成性mioC-oriC转录。定量的S1核酸酶测定表明,在该突变体中,转录水平没有波动。引入此突变抑制了过度启动型dnaAcos突变体的生长缺陷,并以dnaA等位基因特异性方式在半容许温度下严重抑制了起始缺陷型dnaA突变体的生长。这些结果表明,mioC-oriC转录抑制了oriC的起始。确实,流式细胞仪分析和同步培养中DNA复制的定量揭示了mioC启动子突变改变了染色体复制起始的控制,例如通过延迟细胞周期内的复制。结论:这些结果表明,mioC基因的转录调控是细胞周期协调的染色体复制起始所必需的。

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