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The MaoP/maoS Site-Specific System Organizes the Ori Region of the E. coli Chromosome into a Macrodomain

机译:MaoP / maoS特定于站点的系统将大肠杆菌染色体的Ori区组织为一个宏域

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摘要

The Ori region of bacterial genomes is segregated early in the replication cycle of bacterial chromosomes. Consequently, Ori region positioning plays a pivotal role in chromosome dynamics. The Ori region of the E. coli chromosome is organized as a macrodomain with specific properties concerning DNA mobility, segregation of loci and long distance DNA interactions. Here, by using strains with chromosome rearrangements and DNA mobility as a read-out, we have identified the MaoP/maoS system responsible for constraining DNA mobility in the Ori region and limiting long distance DNA interactions with other regions of the chromosome. MaoP belongs to a group of proteins conserved in the Enterobacteria that coevolved with Dam methylase including SeqA, MukBEF and MatP that are all involved in the control of chromosome conformation and segregation. Analysis of DNA rings excised from the chromosome demonstrated that the single maoS site is required in cis on the chromosome to exert its effect while MaoP can act both in cis and in trans. The position of markers in the Ori region was affected by inactivating maoP. However, the MaoP/maoS system was not sufficient for positioning the Ori region at the ¼–¾ regions of the cell. We also demonstrate that the replication and the resulting expansion of bulk DNA are localized centrally in the cell. Implications of these results for chromosome positioning and segregation in E. coli are discussed.
机译:细菌基因组的Ori区在细菌染色体复制周期的早期被隔离。因此,Ori区域定位在染色体动力学中起着关键作用。大肠杆菌染色体的Ori区组织为一个宏域,具有涉及DNA迁移,基因座分离和长距离DNA相互作用的特定属性。在这里,通过使用具有染色体重排和DNA迁移率的菌株作为读数,我们确定了MaoP / maoS系统,该系统负责限制Ori地区的DNA迁移率并限制与染色体其他区域的长距离DNA相互作用。 MaoP属于肠道细菌中保守的一组蛋白质,与Dam甲基化酶共同进化,包括SeqA,MukBEF和MatP,它们都参与染色体构象和分离的控制。从染色体上切除的DNA环的分析表明,染色体上的顺式需要单个maoS位点才能发挥其作用,而MaoP既可以顺式也可以反式起作用。 maoP失活会影响Ori区标记的位置。然而,MaoP / maoS系统不足以将Ori区定位在细胞的¼-¾区。我们还证明了复制和由此产生的大量DNA扩增集中位于细胞的中央。讨论了这些结果对大肠杆菌中染色体定位和分离的影响。

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