Liu Z, Jacobs M, Schaff D A, McCullen C A, Binns A N
Plant Science Institute, Department of Biology, University of Pennsylvania, Philadelphia, PA 19104-6018, USA.
J Bacteriol. 2001 Jun;183(11):3310-7. doi: 10.1128/JB.183.11.3310-3317.2001.
A yeast two-hybrid screen searching for chromosomally encoded proteins that interact with the Agrobacterium tumefaciens VirB8 protein was carried out. This screen identified an interaction candidate homologous to the partial sequence of a gene that had previously been identified in a transposon screen as a potential regulator of virG expression, chvD. In this report, the cloning of the entire chvD gene is described and the gene is sequenced and characterized. Insertion of a promoterless lacZ gene into the chvD locus greatly attenuated virulence and vir gene expression. Compared to that of the wild-type strain, growth of the chvD mutant was reduced in rich, but not minimal, medium. Expression of chvD, as monitored by expression of beta-galactosidase activity from the chvD-lacZ fusion, occurred in both rich and minimal media as well as under conditions that induce virulence gene expression. The ChvD protein is highly homologous to a family of ATP-binding cassette transporters involved in antibiotic export from bacteria and has two complete Walker box motifs. Molecular genetic analysis demonstrated that disruption of either Walker A box, singly, does not inactivate this protein's effect on virulence but that mutations in both Walker A boxes renders it incapable of complementing a chvD mutant strain. Constitutive expression of virG in the chvD mutant strain restored virulence, supporting the hypothesis that ChvD controls virulence through effects on virG expression.
开展了一项酵母双杂交筛选,以寻找与根癌土壤杆菌VirB8蛋白相互作用的染色体编码蛋白。该筛选鉴定出一个与先前在转座子筛选中被鉴定为virG表达潜在调节因子的基因部分序列同源的相互作用候选基因,即chvD。在本报告中,描述了整个chvD基因的克隆,并对该基因进行了测序和表征。将无启动子的lacZ基因插入chvD基因座大大减弱了毒力和vir基因表达。与野生型菌株相比,chvD突变体在丰富培养基而非基本培养基中的生长受到抑制。通过chvD-lacZ融合体的β-半乳糖苷酶活性表达监测chvD的表达,其在丰富培养基和基本培养基中以及在诱导毒力基因表达的条件下均有表达。ChvD蛋白与参与细菌抗生素输出的ATP结合盒转运蛋白家族高度同源,并具有两个完整的沃克盒基序。分子遗传学分析表明,单独破坏任一沃克A盒并不会使该蛋白对毒力的作用失活,但两个沃克A盒中的突变会使其无法互补chvD突变体菌株。在chvD突变体菌株中组成型表达virG可恢复毒力,支持ChvD通过影响virG表达来控制毒力的假说。