Levengood-Freyermuth S K, Click E M, Webster R E
Department of Biochemistry, Duke University Medical Center, Durham, North Carolina 27710.
J Bacteriol. 1993 Jan;175(1):222-8. doi: 10.1128/jb.175.1.222-228.1993.
The TolA protein is involved in maintaining the integrity of the outer membrane of Escherichia coli, as mutations in tolA cause the bacteria to become hypersensitive to detergents and certain antibiotics and to leak periplasmic proteins into the medium. This protein also is required for the group A colicins to exert their effects and for many of the filamentous single-stranded bacteriophage to infect the bacterial cell. TolA is a three-domain protein, with the amino-terminal domain anchoring it to the inner membrane. The helical second domain is proposed to span the periplasmic space to allow the carboxyl-terminal third domain to interact with the outer membrane. A plasmid that allowed the synthesis and transport of the carboxyl-terminal third domain into the periplasmic space was constructed. The presence of an excess of this domain in the periplasm of a wild-type cell resulted in an increased sensitivity to deoxycholate, the release of periplasmic alkaline phosphatase and RNase into the medium, and an increased tolerance to colicins E1, E2, E3, and A. There was no effect on the cells' response to colicin D, which depends on TonB instead of TolA for its action. The presence of the free carboxyl-terminal domain of TolA in the periplasm in a tolA null mutation did not restore the wild-type phenotype, suggesting that this domain must be part of the intact TolA molecule to perform its function. Our results are consistent with a model in which the carboxyl-terminal domain of TolA interacts with components in the periplasm or on the inner surface of the outer membrane to function in maintaining the integrity of this membrane.
TolA蛋白参与维持大肠杆菌外膜的完整性,因为tolA基因的突变会导致细菌对去污剂和某些抗生素高度敏感,并使周质蛋白泄漏到培养基中。该蛋白也是A群大肠杆菌素发挥作用以及许多丝状单链噬菌体感染细菌细胞所必需的。TolA是一种三结构域蛋白,其氨基末端结构域将其锚定在内膜上。螺旋状的第二个结构域被认为跨越周质空间,使羧基末端的第三个结构域能够与外膜相互作用。构建了一个能使羧基末端第三个结构域合成并转运到周质空间的质粒。野生型细胞周质中存在过量的该结构域会导致对脱氧胆酸盐的敏感性增加、周质碱性磷酸酶和核糖核酸酶释放到培养基中,以及对大肠杆菌素E1、E2、E3和A的耐受性增加。这对细胞对大肠杆菌素D的反应没有影响,大肠杆菌素D的作用依赖于TonB而非TolA。tolA基因缺失突变的细胞周质中存在游离的TolA羧基末端结构域并不能恢复野生型表型,这表明该结构域必须是完整TolA分子的一部分才能发挥其功能。我们的结果与一个模型一致,即TolA的羧基末端结构域与周质或外膜内表面的成分相互作用,以维持该膜的完整性。