Collier Justine
Department of Fundamental Microbiology, Faculty of Biology and Medicine, University of Lausanne, Quartier UNIL/Sorge, Lausanne, CH 1015, Switzerland.
Mol Microbiol. 2010 Jul 1;77(1):11-4. doi: 10.1111/j.1365-2958.2010.07225.x. Epub 2010 May 24.
Cell division in Gram-negative bacteria involves the co-ordinated invagination of the three cell envelope layers to form two new daughter cell poles. This complex process starts with the polymerization of the tubulin-like protein FtsZ into a Z-ring at mid-cell, which drives cytokinesis and recruits numerous other proteins to the division site. These proteins are involved in Z-ring constriction, inner- and outer-membrane invagination, peptidoglycan remodelling and daughter cell separation. Three papers in this issue of Molecular Microbiology, from the teams of Lucy Shapiro, Martin Thanbichler and Christine Jacobs-Wagner, describe a novel protein, called DipM for Division Involved Protein with LysM domains, that is required for cell division in Caulobacter crescentus. DipM localizes to the mid-cell during cell division, where it is necessary for the hydrolysis of the septal peptidoglycan to remodel the cell wall. Loss of DipM results in severe defects in cell envelope constriction, which is deleterious under fast-growth conditions. State-of-the-art microscopy experiments reveal that the peptidoglycan is thicker and that the cell wall is incorrectly organized in DipM-depleted cells compared with wild-type cells, demonstrating that DipM is essential for reorganizing the cell wall at the division site, for envelope invagination and cell separation in Caulobacter.
革兰氏阴性菌的细胞分裂涉及三个细胞包膜层的协调内陷,以形成两个新的子细胞极。这个复杂的过程始于微管蛋白样蛋白FtsZ在细胞中部聚合成Z环,它驱动胞质分裂并将许多其他蛋白质招募到分裂位点。这些蛋白质参与Z环收缩、内膜和外膜内陷、肽聚糖重塑以及子细胞分离。本期《分子微生物学》上来自露西·夏皮罗、马丁·坦比希勒和克里斯汀·雅各布斯 - 瓦格纳团队的三篇论文描述了一种名为DipM(具有LysM结构域的参与分裂蛋白)的新型蛋白质,它是新月柄杆菌细胞分裂所必需的。DipM在细胞分裂期间定位于细胞中部,在那里它对于隔膜肽聚糖的水解以重塑细胞壁是必需的。DipM的缺失导致细胞包膜收缩出现严重缺陷,这在快速生长条件下是有害的。最先进的显微镜实验表明,与野生型细胞相比,在缺失DipM的细胞中肽聚糖更厚且细胞壁组织不正确,这表明DipM对于在分裂位点重组细胞壁、包膜内陷和柄杆菌中的细胞分离至关重要。