Hapfelmeier S, Domke N, Zambryski P C, Baron C
Institut für Genetik und Mikrobiologie der Universität München, Lehrstuhl für Mikrobiologie, D-80638 Munich, Germany.
J Bacteriol. 2000 Aug;182(16):4505-11. doi: 10.1128/JB.182.16.4505-4511.2000.
VirB6 from Agrobacterium tumefaciens is an essential component of the type IV secretion machinery for T pilus formation and genetic transformation of plants. Due to its predicted topology as a polytopic inner membrane protein, it was proposed to form the transport pore for cell-to-cell transfer of genetic material and proteinaceous virulence factors. Here, we show that the absence of VirB6 leads to reduced cellular levels of VirB5 and VirB3, which were proposed to assist T pilus formation as minor component(s) or assembly factor(s), respectively. Overexpression of virB6 in trans restored levels of cell-bound and T pilus-associated VirB5 to wild type but did not restore VirB3 levels. Thus, VirB6 has a stabilizing effect on VirB5 accumulation, thereby regulating T pilus assembly. In the absence of VirB6, cell-bound VirB7 monomers and VirB7-VirB9 heterodimers were reduced and VirB7 homodimer formation was abolished. This effect could not be restored by expression of VirB6 in trans. Expression of TraD, a component of the transfer machinery of the IncN plasmid pKM101, with significant sequence similarity to VirB6, restored neither protein levels nor bacterial virulence but partly permitted T pilus formation in a virB6 deletion strain. VirB6 may therefore regulate T pilus formation by direct interaction with VirB5, and wild-type levels of VirB3 and VirB7 homodimers are not required.
根癌农杆菌的VirB6是IV型分泌机制中T菌毛形成和植物遗传转化的必需成分。由于其预测的拓扑结构为多跨膜内膜蛋白,有人提出它形成了遗传物质和蛋白质毒性因子细胞间转移的运输孔。在这里,我们表明,VirB6的缺失导致VirB5和VirB3的细胞水平降低,有人分别提出它们作为次要成分或组装因子协助T菌毛形成。反式过表达virB6可将细胞结合的和T菌毛相关的VirB5水平恢复到野生型,但不能恢复VirB3水平。因此,VirB6对VirB5的积累有稳定作用,从而调节T菌毛的组装。在没有VirB6的情况下,细胞结合的VirB7单体和VirB7-VirB9异二聚体减少,VirB7同二聚体形成被消除。反式表达VirB6无法恢复这种效应。IncN质粒pKM101转移机制的一个成分TraD与VirB6有显著的序列相似性,其表达既不能恢复蛋白水平也不能恢复细菌毒力,但部分允许在virB6缺失菌株中形成T菌毛。因此,VirB6可能通过与VirB5直接相互作用来调节T菌毛的形成,并且不需要野生型水平的VirB3和VirB7同二聚体。