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首页> 外文期刊>Molecular Microbiology >A protein critical for cell constriction in the Gram-negative bacterium Caulobacter crescentus localizes at the division site through its peptidoglycan-binding LysM domains.
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A protein critical for cell constriction in the Gram-negative bacterium Caulobacter crescentus localizes at the division site through its peptidoglycan-binding LysM domains.

机译:对克氏阴性细菌Craubacter crescentus中的细胞收缩至关重要的蛋白质通过其肽聚糖结合型LysM结构域位于分裂位点。

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摘要

During division of Gram-negative bacteria, invagination of the cytoplasmic membrane and inward growth of the peptidoglycan (PG) are followed by the cleavage of connective septal PG to allow cell separation. This PG splitting process requires temporal and spatial regulation of cell wall hydrolases. In Escherichia coli, LytM factors play an important role in PG splitting. Here we identify and characterize a member of this family (DipM) in Caulobacter crescentus. Unlike its E. coli counterparts, DipM is essential for viability under fast-growth conditions. Under slow-growth conditions, the DeltadipM mutant displays severe defects in cell division and FtsZ constriction. Consistent with its function in division, DipM colocalizes with the FtsZ ring during the cell cycle. Mutagenesis suggests that the LytM domain of DipM is essential for protein function, despite being non-canonical. DipM also carries two tandems of the PG-binding LysM domain that are sufficient for FtsZ ring localization. Localization and fluorescence recovery after photobleaching microscopy experiments suggest that DipM localization is mediated, at least in part, by the ability of the LysM tandems to distinguish septal, multilayered PG from non-septal, monolayered PG.
机译:在革兰氏阴性细菌分裂过程中,胞质膜的内陷和肽聚糖(PG)的向内生长,接着是结缔间隔PG的裂解,以允许细胞分离。该PG分裂过程需要细胞壁水解酶的时间和空间调节。在大肠杆菌中,LytM因子在PG分裂中起重要作用。在这里,我们确定并鉴定了新月形杆菌中该家族(DipM)的成员。与大肠杆菌相比,DipM对于快速生长条件下的生存能力至关重要。在缓慢生长条件下,DeltadipM突变体在细胞分裂和FtsZ收缩中显示出严重缺陷。与其分裂功能一致,DipM在细胞周期中与FtsZ环共定位。诱变表明,DipM的LytM结构域对蛋白质功能至关重要,尽管不是典型的。 DipM还带有两个足以结合FtsZ环的PG结合LysM结构域的簇。光漂白显微镜实验后的定位和荧光恢复表明,DipM定位至少部分地由LysM tandems区分隔膜,多层PG与非隔膜,单层PG的能力介导。

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