Department of Biochemistry and Molecular Biology, Pennsylvania State University, University Park, PA 16802, USA.
J Bacteriol. 2011 Dec;193(24):6852-63. doi: 10.1128/JB.06190-11. Epub 2011 Oct 7.
The TonB system couples cytoplasmic membrane proton motive force to TonB-gated outer membrane transporters for active transport of nutrients into the periplasm. In Escherichia coli, cytoplasmic membrane proteins ExbB and ExbD promote conformational changes in TonB, which transmits this energy to the transporters. The only known energy-dependent interaction occurs between the periplasmic domains of TonB and ExbD. This study identified sites of in vivo homodimeric interactions within ExbD periplasmic domain residues 92 to 121. ExbD was active as a homodimer (ExbD(2)) but not through all Cys substitution sites, suggesting the existence of conformationally dynamic regions in the ExbD periplasmic domain. A subset of homodimeric interactions could not be modeled on the nuclear magnetic resonance (NMR) structure without significant distortion. Most importantly, the majority of ExbD Cys substitutions that mediated homodimer formation also mediated ExbD-TonB heterodimer formation with TonB A150C. Consistent with the implied competition, ExbD homodimer formation increased in the absence of TonB. Although ExbD D25 was not required for their formation, ExbD dimers interacted in vivo with ExbB. ExbD-TonB interactions required ExbD transmembrane domain residue D25. These results suggested a model where ExbD(2) assembled with ExbB undergoes a transmembrane domain-dependent transition and exchanges partners in localized homodimeric interfaces to form an ExbD(2)-TonB heterotrimer. The findings here were also consistent with our previous hypothesis that ExbD guides the conformation of the TonB periplasmic domain, which itself is conformationally dynamic.
TonB 系统将细胞质膜质子动力与 TonB 门控外膜转运体偶联,用于将营养物质主动转运到周质中。在大肠杆菌中,细胞质膜蛋白 ExbB 和 ExbD 促进 TonB 的构象变化,将能量传递给转运体。唯一已知的能量依赖相互作用发生在 TonB 和 ExbD 的周质域之间。本研究鉴定了 ExbD 周质域残基 92 到 121 内体内同源二聚体相互作用的位点。ExbD 作为同源二聚体(ExbD(2))是活跃的,但不是通过所有 Cys 取代位点,这表明 ExbD 周质域中存在构象动态区域。没有明显的扭曲,一部分同源二聚体相互作用无法在核磁共振(NMR)结构上建模。最重要的是,介导同源二聚体形成的 ExbD Cys 取代物中的大多数也介导了 ExbD-TonB 异源二聚体与 TonB A150C 的形成。与所暗示的竞争一致,在没有 TonB 的情况下,ExbD 同源二聚体的形成增加。尽管 ExbD D25 不是形成同源二聚体所必需的,但 ExbD 二聚体在体内与 ExbB 相互作用。ExbD-TonB 相互作用需要 ExbD 跨膜域残基 D25。这些结果表明了一个模型,其中 ExbD(2)与 ExbB 组装,经历一个跨膜域依赖性的转变,并在局部同源二聚体界面上交换伙伴,形成 ExbD(2)-TonB 异源三聚体。这些发现也与我们之前的假设一致,即 ExbD 指导 TonB 周质域的构象,而 TonB 本身是构象动态的。