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首页> 外文期刊>Nature Communications >MinCD cell division proteins form alternating copolymeric cytomotive filaments
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MinCD cell division proteins form alternating copolymeric cytomotive filaments

机译:MinCD细胞分裂蛋白形成交替的共生细胞丝

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摘要

During bacterial cell division, filaments of the tubulin-like protein FtsZ assemble at midcell to form the cytokinetic Z-ring. Its positioning is regulated by the oscillation of MinCDE proteins. MinC is activated by MinD through an unknown mechanism and prevents Z-ring assembly anywhere but midcell. Here, using X-ray crystallography, electron microscopy and in vivo analyses, we show that MinD activates MinC by forming a new class of alternating copolymeric filaments that show similarity to eukaryotic septin filaments. A non-polymerizing mutation in MinD causes aberrant cell division in Escherichia coli. MinCD copolymers bind to membrane, interact with FtsZ and are disassembled by MinE. Imaging a functional msfGFP-MinC fusion protein in MinE-deleted cells reveals filamentous structures. EM imaging of our reconstitution of the MinCD-FtsZ interaction on liposome surfaces reveals a plausible mechanism for regulation of FtsZ ring assembly by MinCD copolymers.
机译:在细菌细胞分裂过程中,微管蛋白样蛋白FtsZ的细丝在中细胞处聚集,形成细胞动力学Z环。它的定位受MinCDE蛋白振荡的调节。 MinC是由MinD通过未知机制激活的,它可以防止Z形环组装到中单元以外的任何位置。在这里,使用X射线晶体学,电子显微镜和体内分析,我们表明MinD通过形成一类新的交替共聚长丝激活了MinC,这些长丝与真核生物的Septin长丝相似。 MinD中的非聚合突变会导致大肠杆菌中异常的细胞分裂。 MinCD共聚物与膜结合,与FtsZ相互作用,并被MinE分解。在MinE缺失的细胞中对功能性msfGFP-MinC融合蛋白进行成像显示了丝状结构。我们在脂质体表面重构MinCD-FtsZ相互作用的EM成像揭示了MinCD共聚物调节FtsZ环组装的合理机制。

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