Department of Biological Sciences, Bowling Green State University, Bowling Green, Ohio, 43403; Division of Science and Math, Lorain County Community College, Elyria, Ohio, 44035.
Microbiologyopen. 2013 Aug;2(4):618-32. doi: 10.1002/mbo3.101. Epub 2013 Jul 2.
Mutations involving the Tol-Pal complex of Escherichia coli result in a subtle phenotype in which cells chain when grown under low-salt conditions. Here, the nonpolar deletion of individual genes encoding the cytoplasmic membrane-associated components of the complex (TolQ, TolR, TolA) produced a similar phenotype. Surprisingly, the overexpression of one of these proteins, TolQ, resulted in a much more overt phenotype in which cells occurred as elongated rods coupled in long chains when grown under normal salt conditions. Neither TolR nor TolA overexpression produced a phenotype, nor was the presence of either protein required for the TolQ-dependent phenotype. Consistent with their native membrane topology, the amino-terminal domain of TolQ specifically associated in vivo with the periplasmic domain of FtsN in a cytoplasm-based two-hybrid analysis. Further, the concomitant overexpression of FtsN rescued the TolQ-dependent phenotype, suggesting a model wherein the overexpression of TolQ sequesters FtsN, depleting this essential protein from the divisome during Gram-negative cell division. The role of the Tol-Pal system in division is discussed.
涉及大肠杆菌 Tol-Pal 复合物的突变导致细胞在低盐条件下生长时出现细微的表型。在这里,非极性缺失编码细胞质膜相关复合物成分的单个基因(TolQ、TolR、TolA)产生了类似的表型。令人惊讶的是,这些蛋白质之一 TolQ 的过表达导致了更为明显的表型,其中细胞在正常盐条件下生长时呈长杆状并长链连接。TolR 或 TolA 的过表达都没有产生表型,而且在 TolQ 依赖性表型中也不需要这两种蛋白质的存在。与它们的天然膜拓扑结构一致,TolQ 的氨基末端结构域在基于细胞质的双杂交分析中特异性地与 FtsN 的周质域结合。此外,FtsN 的共过表达挽救了 TolQ 依赖性表型,这表明 TolQ 的过表达将 FtsN 隔离,在革兰氏阴性细胞分裂过程中使这种必需蛋白从分裂体中耗尽。讨论了 Tol-Pal 系统在分裂中的作用。