首页> 美国卫生研究院文献>Journal of Bacteriology >Mutants Suppressors and Wrinkled Colonies: Mutant Alleles of the Cell Division Gene ftsQ Point to Functional Domains in FtsQ and a Role for Domain 1C of FtsA in Divisome Assembly
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Mutants Suppressors and Wrinkled Colonies: Mutant Alleles of the Cell Division Gene ftsQ Point to Functional Domains in FtsQ and a Role for Domain 1C of FtsA in Divisome Assembly

机译:突变体抑制子和皱纹菌落:细胞分裂基因ftsQ的突变等位基因指向FtsQ中的功能结构域以及FtsA的1C结构域在多样化组装中的作用

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摘要

Cell division in Escherichia coli requires the concerted action of at least 10 essential proteins. One of these proteins, FtsQ, is physically associated with multiple essential division proteins, including FtsK, FtsL, FtsB, FtsW, and FtsI. In this work we performed a genetic analysis of the ftsQ gene. Our studies identified C-terminal residues essential for FtsQ's interaction with two downstream proteins, FtsL and FtsB. Here we also describe a novel screen for cell division mutants based on a wrinkled-colony morphology, which yielded several new point mutations in ftsQ. Two of these mutations affect localization of FtsQ to midcell and together define a targeting role for FtsQ's α domain. Further characterization of one localization-defective mutant protein [FtsQ(V92D)] revealed an unexpected role in localization for the first 49 amino acids of FtsQ. Finally, we found a suppressor of FtsQ(V92D) that was due to a point mutation in domain 1C of FtsA, a domain previously implicated in the recruitment of divisome proteins. However, despite reports of a potential interaction between FtsA and FtsQ, suppression by FtsA(I143L) is not mediated via direct contact with FtsQ. Rather, this mutation acts as a general suppressor of division defects, which include deletions of the normally essential genes zipA and ftsK and mutations in FtsQ that affect both localization and recruitment. Together, these results reveal increasingly complex connections within the bacterial divisome.
机译:大肠杆菌中的细胞分裂需要至少10种必需蛋白质的协同作用。这些蛋白质之一FtsQ与多种必需的分裂蛋白质物理相关,包括FtsK,FtsL,FtsB,FtsW和FtsI。在这项工作中,我们对ftsQ基因进行了遗传分析。我们的研究确定了FtsQ与两个下游蛋白FtsL和FtsB相互作用所必需的C末端残基。在这里,我们还描述了一种基于皱纹集落形态的细胞分裂突变体的新型筛选方法,该筛选器在ftsQ中产生了几个新的点突变。这些突变中的两个影响FtsQ定位到中细胞,并​​共同定义FtsQ的α结构域的靶向作用。一个本地化缺陷突变蛋白[FtsQ(V92D)]的进一步表征揭示了FtsQ的前49个氨基酸在定位中的意外作用。最后,我们发现了FtsQ(V92D)的抑制剂,该抑制剂是由于FtsA域1C中的点突变所致,该域先前与募集divisome蛋白有关。但是,尽管有报道称FtsA和FtsQ之间可能存在相互作用,但FtsA(I143L)的抑制作用不是通过与FtsQ的直接接触来介导的。而是,该突变充当分裂缺陷的一般抑制物,其包括通常必不可少的基因zipA和ftsK的缺失以及影响定位和募集的FtsQ中的突变。在一起,这些结果揭示了细菌divisome内越来越复杂的连接。

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