Yuan Qing, Carle Anna, Gao Chan, Sivanesan Durga, Aly Khaled Ahmed, Höppner Christoph, Krall Lilian, Domke Natalie, Baron Christian
Department of Biology, McMaster University, Hamilton, Ontario LS8 4K1, Canada.
J Biol Chem. 2005 Jul 15;280(28):26349-59. doi: 10.1074/jbc.M502347200. Epub 2005 May 18.
Type IV secretion systems mediate the translocation of virulence factors (proteins and/or DNA) from Gram-negative bacteria into eukaryotic cells. A complex of 11 conserved proteins (VirB1-VirB11) spans the inner and the outer membrane and assembles extracellular T-pili in Agrobacterium tumefaciens. Here we report a sequence of protein interactions required for the formation of complexes between VirB2 and VirB5, which precedes their incorporation into pili. The NTPase Walker A active site of the inner membrane protein VirB4 is required for virulence, but an active site VirB4 variant stabilized VirB3 and VirB8 and enabled T-pilus formation. Analysis of VirB protein complexes extracted from the membranes with mild detergent revealed that VirB2-VirB5 complex formation depended on VirB4, which identified a novel T-pilus assembly step. Bicistron expression demonstrated direct interaction of VirB4 with VirB8, and analyses with purified proteins showed that VirB5 bound to VirB8 and VirB10. VirB4 therefore localizes at the basis of a trans-envelope interaction sequence, and by stabilization of VirB8 it mediates the incorporation of VirB5 and VirB2 into extracellular pili.
IV型分泌系统介导革兰氏阴性菌的毒力因子(蛋白质和/或DNA)转运至真核细胞中。由11种保守蛋白(VirB1-VirB11)组成的复合物跨越内膜和外膜,并在根癌土壤杆菌中组装细胞外T菌毛。在此,我们报道了VirB2和VirB5之间形成复合物所需的蛋白质相互作用序列,这一过程发生在它们整合到菌毛之前。内膜蛋白VirB4的NTPase沃克A活性位点对毒力是必需的,但一个活性位点VirB4变体稳定了VirB3和VirB8并促进了T菌毛的形成。用温和去污剂从膜中提取的VirB蛋白复合物分析表明,VirB2-VirB5复合物的形成依赖于VirB4,这确定了一个新的T菌毛组装步骤。双顺反子表达证明了VirB4与VirB8直接相互作用,用纯化蛋白进行的分析表明VirB5与VirB8和VirB10结合。因此,VirB4定位于跨包膜相互作用序列的基础上,并通过稳定VirB8介导VirB5和VirB2整合到细胞外菌毛中。