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FtsEX在大肠杆菌细胞分裂中的作用:ftsEX突变体的生存能力取决于功能性SufI或高渗透压强度。

Role of FtsEX in cell division of Escherichia coli: viability of ftsEX mutants is dependent on functional SufI or high osmotic strength.

作者信息

Reddy Manjula

机构信息

Centre for Cellular and Molecular Biology, Uppal Road, Hyderabad 500007, India.

出版信息

J Bacteriol. 2007 Jan;189(1):98-108. doi: 10.1128/JB.01347-06. Epub 2006 Oct 27.

Abstract

In Escherichia coli, at least 12 proteins, FtsZ, ZipA, FtsA, FtsE/X, FtsK, FtsQ, FtsL, FtsB, FtsW, FtsI, FtsN, and AmiC, are known to localize to the septal ring in an interdependent and sequential pathway to coordinate the septum formation at the midcell. The FtsEX complex is the latest recruit of this pathway, and unlike other division proteins, it is shown to be essential only on low-salt media. In this study, it is shown that ftsEX null mutations are not only salt remedial but also osmoremedial, which suggests that FtsEX may not be involved in salt transport as previously thought. Increased coexpression of cell division proteins FtsQ-FtsA-FtsZ or FtsN alone restored the growth defects of ftsEX mutants. ftsEX deletion exacerbated the defects of most of the mutants affected in Z ring localization and septal assembly; however, the ftsZ84 allele was a weak suppressor of ftsEX. The viability of ftsEX mutants in high-osmolarity conditions was shown to be dependent on the presence of a periplasmic protein, SufI, a substrate of twin-arginine translocase. In addition, SufI in multiple copies could substitute for the functions of FtsEX. Taken together, these results suggest that FtsE and FtsX are absolutely required for the process of cell division in conditions of low osmotic strength for the stability of the septal ring assembly and that, during high-osmolarity conditions, the FtsEX and SufI functions are redundant for this essential process.

摘要

在大肠杆菌中,已知至少有12种蛋白质,即FtsZ、ZipA、FtsA、FtsE/X、FtsK、FtsQ、FtsL、FtsB、FtsW、FtsI、FtsN和AmiC,通过相互依赖的顺序途径定位于隔膜环,以协调细胞中部隔膜的形成。FtsEX复合物是该途径中最新招募的成员,与其他分裂蛋白不同,它仅在低盐培养基上才显示出必需性。在本研究中,结果表明ftsEX缺失突变不仅可被盐补救,还可被渗透压补救,这表明FtsEX可能不像之前认为的那样参与盐运输。单独增加细胞分裂蛋白FtsQ - FtsA - FtsZ或FtsN的共表达可恢复ftsEX突变体的生长缺陷。ftsEX缺失加剧了大多数在Z环定位和隔膜组装方面受影响的突变体的缺陷;然而,ftsZ84等位基因是ftsEX的弱抑制子。ftsEX突变体在高渗透压条件下的生存能力显示依赖于一种周质蛋白SufI的存在,SufI是双精氨酸转运酶的底物。此外,多个拷贝的SufI可替代FtsEX的功能。综上所述,这些结果表明,在低渗透强度条件下,FtsE和FtsX对于细胞分裂过程中隔膜环组装的稳定性是绝对必需的,并且在高渗透压条件下,FtsEX和SufI的功能对于这一基本过程是冗余的。

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