首页> 外文期刊>Nucleic Acids Research >Escherichia coli low-copy-number plasmid R1 centromere parC forms a U-shaped complex with its binding protein ParR.
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Escherichia coli low-copy-number plasmid R1 centromere parC forms a U-shaped complex with its binding protein ParR.

机译:大肠杆菌低拷贝数质粒R1着丝粒parC与其结合蛋白ParR形成U形复合物。

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摘要

The Escherichia coli low-copy-number plasmid R1 contains a segregation machinery composed of parC, ParR and parM. The R1 centromere-like site parC contains two separate sets of repeats. By atomic force microscopy (AFM) we show here that ParR molecules bind to each of the 5-fold repeated iterons separately with the intervening sequence unbound by ParR. The two ParR protein complexes on parC do not complex with each other. ParR binds with a stoichiometry of about one ParR dimer per each single iteron. The measured DNA fragment lengths agreed with B-form DNA and each of the two parC 5-fold interon DNA stretches adopts a linear path in its complex with ParR. However, the overall parC/ParR complex with both iteron repeats bound by ParR forms an overall U-shaped structure: the DNA folds back on itself nearly completely, including an angle of approximately 150 degrees . Analysing linear DNA fragments, we never observed dimerized ParR complexes on one parC DNA molecule (intramolecular) nor a dimerization between ParR complexes bound to two different parC DNA molecules (intermolecular). This bacterial segrosome is compared to other bacterial segregation complexes. We speculate that partition complexes might have a similar overall structural organization and, at least in part, common functional properties.
机译:大肠杆菌低拷贝数质粒R1包含由parC,ParR和parM组成的分离机制。 R1着丝粒样位点parC包含两组独立的重复序列。通过原子力显微镜(AFM),我们在这里显示ParR分子分别与5倍重复的Iteron结合,中间序列不受ParR约束。 parC上的两个ParR蛋白复合物不会彼此复合。 ParR与每个单个Iteron约一个ParR二聚体的化学计量结合。测得的DNA片段长度与B型DNA一致,并且两个parC 5倍内含子DNA延伸片段中的每一个均与ParR的复合物采用线性路径。然而,具有被ParR结合的两个iteron重复序列的整体parC / ParR复合物形成了整体U形结构:DNA几乎完全折回自身,包括大约150度的角度。分析线性DNA片段,我们从未观察到一个parC DNA分子上的二聚ParR复合物(分子内),也从未观察到结合到两个不同parC DNA分子上的ParR复合物之间的二聚化(分子间)。将该细菌脂质体与其他细菌分离复合物进行了比较。我们推测分区复合体可能具有相似的整体结构组织,并且至少部分具有共同的功能特性。

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