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A polymeric protein anchors the chromosomal origin/ParB complex at a bacterial cell pole

机译:聚合蛋白将染色体起源/ ParB复合物锚定在细菌细胞极处

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摘要

Bacterial replication origins move towards opposite ends of the cell during DNA segregation. We have identified a proline-rich polar protein, PopZ, required to anchor the separated Caulobacter crescentus chromosome origins at the cell poles, a function that is essential for maintaining chromosome organization and normal cell division. PopZ interacts directly with the ParB protein bound to specific DNA sequences near the replication origin. As the origin/ParB complex is being replicated and moved across the cell, PopZ accumulates at the cell pole and tethers the origin in place upon arrival. The polar accumulation of PopZ occurs by a diffusion/capture mechanism that requires the MreB cytoskeleton. High molecular weight oligomers of PopZ assemble in vitro into a filamentous network with trimer junctions, suggesting that the PopZ network and ParB-bound DNA interact in an adhesive complex, fixing the chromosome origin at the cell pole.
机译:细菌复制起点在DNA分离过程中移向细胞的相对末端。我们已经鉴定出富含脯氨酸的极性蛋白PopZ,该蛋白需要将分离的新月形棒状杆菌染色体起源锚定在细胞极处,该功能对于维持染色体组织和正常细胞分裂至关重要。 PopZ与与复制起点附近特定DNA序列结合的ParB蛋白直接相互作用。随着起点/ ParB复合体的复制并在整个单元中移动,PopZ会在单元极处积累,并在到达时将起点绑定到位。 PopZ的极性积累是通过需要MreB细胞骨架的扩散/捕获机制发生的。 PopZ的高分子量低聚物在体外组装成具有三聚体连接的丝状网络,这表明PopZ网络和ParB结合的DNA在粘附复合物中相互作用,从而将染色体起源固定在细胞极。

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