Ollis Anne A, Manning Marta, Held Kiara G, Postle Kathleen
Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, PA 16802, USA.
Mol Microbiol. 2009 Aug;73(3):466-81. doi: 10.1111/j.1365-2958.2009.06785.x. Epub 2009 Jul 16.
The TonB system of Escherichia coli (TonB/ExbB/ExbD) transduces the protonmotive force (pmf) of the cytoplasmic membrane to drive active transport by high-affinity outer membrane transporters. In this study, chromosomally encoded ExbD formed formaldehyde-linked complexes with TonB, ExbB and itself (homodimers) in vivo. Pmf was required for detectable cross-linking between TonB-ExbD periplasmic domains. Consistent with that observation, the presence of inactivating transmembrane domain mutations ExbD(D25N) or TonB(H20A) also prevented efficient formaldehyde cross-linking between ExbD and TonB. A specific site of periplasmic interaction occurred between ExbD(A92C) and TonB(A150C) and required functional transmembrane domains in both proteins. Conversely, neither TonB, ExbB nor pmf were required for ExbD dimer formation. These data suggest two possible models where either dynamic complex formation occurred through transmembrane domains or the transmembrane domains of ExbD and TonB configure their respective periplasmic domains. Analysis of T7-tagged ExbD with anti-ExbD antibodies revealed that a T7 tag was responsible both for our previous failure to detect T7-ExbD-ExbB and T7-ExbD-TonB formaldehyde-linked complexes and for the concomitant artefactual appearance of T7-ExbD trimers.
大肠杆菌的TonB系统(TonB/ExbB/ExbD)将细胞质膜的质子动力(pmf)转化为高亲和力外膜转运蛋白驱动主动运输。在本研究中,染色体编码的ExbD在体内与TonB、ExbB以及自身(同型二聚体)形成甲醛连接的复合物。TonB-ExbD周质结构域之间可检测到的交联需要pmf。与该观察结果一致,失活的跨膜结构域突变ExbD(D25N)或TonB(H20A)的存在也阻止了ExbD和TonB之间有效的甲醛交联。ExbD(A92C)和TonB(A150C)之间发生了周质相互作用的特定位点,并且两种蛋白质都需要功能性跨膜结构域。相反,ExbD二聚体形成不需要TonB、ExbB或pmf。这些数据提示了两种可能的模型,即通过跨膜结构域发生动态复合物形成,或者ExbD和TonB的跨膜结构域配置它们各自的周质结构域。用抗ExbD抗体分析T7标记的ExbD表明,T7标签既是我们之前未能检测到T7-ExbD-ExbB和T7-ExbD-TonB甲醛连接复合物的原因,也是T7-ExbD三聚体伴随出现假象的原因。