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Molecular handcuffing of the relaxosome at the origin of conjugative transfer of the plasmid R1162

机译:质粒R1162结合转移起点上的弛豫体分子手铐

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摘要

The assembly of plasmid‐encoded proteins at a unique site (oriT) on the plasmid R1162, to form a complex called the relaxosome, is required for conjugative transfer of the plasmid and for negative regulation of neighboring promoters. Two‐dimensional chloroquine gel electrophoresis was used to show that oriTs are physically coupled at the relaxosome. This interaction requires all the relaxosome proteins, which are assembled into a structure resulting in a decrease in the average linking number of the plasmid DNA in the cell. Molecules with higher superhelical densities are preferentially selected for assembly of the relaxosome. Genetic data obtained earlier indicate that the molecular coupling reported here is a ‘handcuffing' reaction that contributes to the regulation of adjacent plasmid promoters. However, although these promoters affect the expression of the genes for replication, plasmid copy‐control is regulated independently. This is the first time ‘handcuffing' has been observed at an oriT, and its possible significance for transfer is discussed.
机译:质粒共轭转移和负调控相邻启动子需要在质粒R1162的唯一位点(oriT)上组装质粒编码的蛋白质,以形成复合体。二维氯喹凝胶电泳用于显示oriTs在弛豫体上物理偶联。这种相互作用需要所有松弛体蛋白,这些蛋白被组装成一个结构,导致细胞中质粒DNA的平均连接数减少。优先选择具有较高超螺旋密度的分子来组装弛豫体。较早获得的遗传数据表明,此处报道的分子偶联是“手铐”反应,有助于调节相邻质粒的启动子。然而,尽管这些启动子影响复制基因的表达,但质粒复制控制是独立调节的。这是在oriT上首次观察到“手铐”,并讨论了其可能的转移意义。

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