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Filament structure of bacterial tubulin homologue TubZ

机译:细菌微管蛋白同源物TubZ的细丝结构

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摘要

Low copy number plasmids often depend on accurate partitioning systems for their continued survival. Generally, such systems consist of a centromere-like region of DNA, a DNA-binding adaptor, and a polymerizing cytomotive filament. Together these components drive newly replicated plasmids to opposite ends of the dividing cell. The Bacillus thuringiensis plasmid pBToxis relies on a filament of the tubulin/FtsZ-like protein TubZ for its segregation. By combining crystallography and electron microscopy, we have determined the structure of this filament. We explain how GTP hydrolysis weakens the subunit-subunit contact and also shed light on the partitioning of the plasmid-adaptor complex. The double helical superstructure of TubZ filaments is unusual for tubulin-like proteins. Filaments of ParM, the actin-like partitioning protein, are also double helical. We suggest that convergent evolution shapes these different types of cytomotive filaments toward a general mechanism for plasmid separation.
机译:低拷贝数的质粒通常依赖精确的分配系统来维持其存活。通常,这种系统由DNA的着丝粒样区域,DNA结合衔接子和聚合的细胞动丝组成。这些组件共同驱动新复制的质粒至分裂细胞的相对末端。苏云金芽孢杆菌质粒pBToxis依赖于微管蛋白/ FtsZ样蛋白TubZ的细丝进行分离。通过结合晶体学和电子显微镜,我们确定了这种灯丝的结构。我们解释了GTP水解如何削弱亚基-亚基的接触,并阐明了质粒-适配器复合物的分配。 TubZ细丝的双螺旋超结构对于微管蛋白样蛋白而言是不寻常的。肌动蛋白样分区蛋白ParM的细丝也是双螺旋的。我们建议收敛进化塑造这些不同类型的细胞动素丝向质粒分离的一般机制。

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