Wu Ling Juan, Errington Jeff
Sir William Dunn School of Pathology, University of Oxford, Oxford OX1 3RE, United Kingdom.
Cell. 2004 Jun 25;117(7):915-25. doi: 10.1016/j.cell.2004.06.002.
A range of genetical and physiological experiments have established that diverse bacterial cells possess a function called nucleoid occlusion, which acts to prevent cell division in the vicinity of the nucleoid. We have identified a specific effector of nucleoid occlusion in Bacillus subtilis, Noc (YyaA), as an inhibitor of division that is also a nonspecific DNA binding protein. Under various conditions in which the cell cycle is perturbed, Noc prevents the division machinery from assembling in the vicinity of the nucleoid. Unexpectedly, cells lacking both Noc and the Min system (which prevents division close to the cell poles) are blocked for division, apparently because they establish multiple nonproductive accumulations of division proteins. The results help to explain how B. subtilis specifies the division site under a range of conditions and how it avoids catastrophic breakage of the chromosome by division through the nucleoid.
一系列遗传学和生理学实验证实,多种细菌细胞具有一种名为类核阻隔的功能,该功能可防止在类核附近进行细胞分裂。我们已确定枯草芽孢杆菌中类核阻隔的一种特定效应物Noc(YyaA)是一种分裂抑制剂,它也是一种非特异性DNA结合蛋白。在细胞周期受到干扰的各种条件下,Noc可阻止分裂机器在类核附近组装。出乎意料的是,同时缺乏Noc和Min系统(防止在靠近细胞两极处分裂)的细胞会被阻断分裂,显然是因为它们形成了多个无生产性的分裂蛋白积累。这些结果有助于解释枯草芽孢杆菌在一系列条件下如何确定分裂位点,以及如何避免通过类核进行分裂而导致染色体灾难性断裂。