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胞质羧基末端 ExbB 突变阻止 TonB 和 ExbD 周质域之间依赖能量的相互作用。

Mutations in the ExbB cytoplasmic carboxy terminus prevent energy-dependent interaction between the TonB and ExbD periplasmic domains.

机构信息

Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

J Bacteriol. 2011 Oct;193(20):5649-57. doi: 10.1128/JB.05674-11. Epub 2011 Aug 12.

Abstract

The TonB system of Gram-negative bacteria provides passage across the outer membrane (OM) diffusion barrier that otherwise limits access to large, scarce, or important nutrients. In Escherichia coli, the integral cytoplasmic membrane (CM) proteins TonB, ExbB, and ExbD couple the CM proton motive force (PMF) to active transport of iron-siderophore complexes and vitamin B(12) across the OM through high-affinity transporters. ExbB is an integral CM protein with three transmembrane domains. The majority of ExbB occupies the cytoplasm. Here, the importance of the cytoplasmic ExbB carboxy terminus (residues 195 to 244) was evaluated by cysteine scanning mutagenesis. D211C and some of the substitutions nearest the carboxy terminus spontaneously formed disulfide cross-links, even though the cytoplasm is a reducing environment. ExbB N196C and D211C substitutions were converted to Ala substitutions to stabilize them. Only N196A, D211A, A228C, and G244C substitutions significantly decreased ExbB activity. With the exception of ExbB(G244C), all of the substituted forms were dominant. Like wild-type ExbB, they all formed a formaldehyde cross-linked tetramer, as well as a tetramer cross-linked to an unidentified protein(s). In addition, they could be formaldehyde cross-linked to ExbD and TonB. Taken together, the data suggested that they assembled normally. Three of four ExbB mutants were defective in supporting both the PMF-dependent formaldehyde cross-link between the periplasmic domains of TonB and ExbD and the proteinase K-resistant conformation of TonB. Thus, mutations in a cytoplasmic region of ExbB prevented a periplasmic event and constituted evidence for signal transduction from cytoplasm to periplasm in the TonB system.

摘要

革兰氏阴性菌的 TonB 系统提供了穿过外膜 (OM) 扩散屏障的通道,否则,这会限制对大量、稀缺或重要营养物质的获取。在大肠杆菌中,整合的细胞质膜 (CM) 蛋白 TonB、ExbB 和 ExbD 将 CM 质子动势 (PMF) 与铁载体复合物和维生素 B12 的主动转运偶联穿过 OM,通过高亲和力转运蛋白。ExbB 是一种具有三个跨膜结构域的完整 CM 蛋白。大部分 ExbB 占据细胞质。在这里,通过半胱氨酸扫描突变评估细胞质 ExbB 羧基末端(残基 195 至 244)的重要性。D211C 和靠近羧基末端的一些取代物自发形成二硫键交联,尽管细胞质是一个还原环境。将 ExbB N196C 和 D211C 取代物转换为 Ala 取代物以稳定它们。只有 N196A、D211A、A228C 和 G244C 取代物显著降低了 ExbB 活性。除了 ExbB(G244C)之外,所有取代形式都是显性的。与野生型 ExbB 一样,它们都形成了甲醛交联的四聚体,以及与未鉴定的蛋白质交联的四聚体。此外,它们可以用甲醛交联到 ExbD 和 TonB。总之,数据表明它们正常组装。四个 ExbB 突变体中有三个在支持 TonB 和 ExbD 周质域之间的 PMF 依赖性甲醛交联以及 TonB 的蛋白水解酶抗性构象方面均有缺陷。因此,ExbB 细胞质区域的突变阻止了周质事件,并构成了 TonB 系统中从细胞质到周质的信号转导的证据。

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