Department of Developmental Biology, Stanford University School of Medicine, Stanford, CA 94305, USA.
Mol Microbiol. 2011 Jun;80(6):1680-98. doi: 10.1111/j.1365-2958.2011.07677.x. Epub 2011 May 17.
Cytokinesis in Gram-negative bacteria is mediated by a multiprotein machine (the divisome) that invaginates and remodels the inner membrane, peptidoglycan and outer membrane. Understanding the order of divisome assembly would inform models of the interactions among its components and their respective functions. We leveraged the ability to isolate synchronous populations of Caulobacter crescentus cells to investigate assembly of the divisome and place the arrival of each component into functional context. Additionally, we investigated the genetic dependence of localization among divisome proteins and the cell cycle regulation of their transcript and protein levels to gain insight into the control mechanisms underlying their assembly. Our results revealed a picture of divisome assembly with unprecedented temporal resolution. Specifically, we observed (i) initial establishment of the division site, (ii) recruitment of early FtsZ-binding proteins, (iii) arrival of proteins involved in peptidoglycan remodelling, (iv) arrival of FtsA, (v) assembly of core divisome components, (vi) initiation of envelope invagination, (vii) recruitment of polar markers and cytoplasmic compartmentalization and (viii) cell separation. Our analysis revealed differences in divisome assembly among Caulobacter and other bacteria that establish a framework for identifying aspects of bacterial cytokinesis that are widely conserved from those that are more variable.
革兰氏阴性菌的细胞分裂是由一个多蛋白机器(分裂体)介导的,该机器向内膜、肽聚糖和外膜进行内陷和重塑。了解分裂体的组装顺序将为其各组成部分之间的相互作用及其各自功能的模型提供信息。我们利用能够分离同步的新月柄杆菌细胞群体的能力来研究分裂体的组装,并将每个组件的到达置于功能背景下。此外,我们研究了分裂体蛋白之间定位的遗传依赖性以及它们的转录物和蛋白质水平的细胞周期调节,以深入了解其组装的控制机制。我们的结果以空前的时间分辨率揭示了分裂体组装的情况。具体来说,我们观察到:(i) 分裂位点的初步建立,(ii) 早期 FtsZ 结合蛋白的招募,(iii) 参与肽聚糖重塑的蛋白质的到达,(iv) FtsA 的到达,(v) 核心分裂体成分的组装,(vi) 包膜内陷的开始,(vii) 极性标记的招募和细胞质分隔,以及(viii) 细胞分离。我们的分析揭示了在新月柄杆菌和其他建立细菌细胞分裂的框架的细菌中,分裂体组装存在差异,这为确定细菌细胞分裂中广泛保守的方面和更具变异性的方面提供了基础。