Binns A N, Beaupré C E, Dale E M
Department of Biology, University of Pennsylvania, Philadelphia 19104-6018, USA.
J Bacteriol. 1995 Sep;177(17):4890-9. doi: 10.1128/jb.177.17.4890-4899.1995.
The transfer of DNA from Agrobacterium tumefaciens into a plant cell requires the activities of several virulence (vir) genes that reside on the tumor-inducing (Ti) plasmid. The putative transferred intermediate is a single-stranded DNA (T strand), covalently attached to the VirD2 protein and coated with the single-stranded DNA-binding protein, VirE2. The movement of this intermediate out of Agrobacterium cells and into plant cells requires the expression of the virB operon, which encodes 11 proteins that localize to the membrane system. Our earlier studies showed that the IncQ broad-host-range plasmid RSF1010, which can be transferred from Agrobacterium cells to plant cells, inhibits the transfer of T-DNA from pTiA6 in a fashion that is reversed by overexpression of virB9, virB10, and virB11. Here, we examined the specificity of this inhibition by following the transfer of other T-DNA molecules. By using extracellular complementation assays, the effects of RSF1010 on movement of either VirE2 or an uncoated T strand from A. tumefaciens were also monitored. The RSF1010 derivative plasmid pJW323 drastically inhibited the capacity of strains to serve as VirE2 donors but only partially inhibited T-strand transfer from virE2 mutants. Further, we show that all the virB genes tested are required for the movement of VirE2 and the uncoated T strand as assayed by extracellular complementation. Our results are consistent with a model in which the RSF1010 plasmid, or intermediates from it, compete with the T strand and VirE2 for a common transport site.
将DNA从根癌土壤杆菌转移到植物细胞中需要几个位于致瘤(Ti)质粒上的毒力(vir)基因发挥作用。推测的转移中间体是一条单链DNA(T链),它与VirD2蛋白共价连接,并被单链DNA结合蛋白VirE2包裹。这种中间体从土壤杆菌细胞中移出并进入植物细胞需要virB操纵子的表达,该操纵子编码定位于膜系统的11种蛋白质。我们早期的研究表明,IncQ广宿主范围质粒RSF1010可以从土壤杆菌细胞转移到植物细胞中,它以一种被virB9、virB10和virB11过表达逆转的方式抑制来自pTiA6的T-DNA的转移。在这里,我们通过追踪其他T-DNA分子的转移来研究这种抑制的特异性。通过细胞外互补分析,还监测了RSF1010对VirE2或未包裹的T链从根癌土壤杆菌中移动的影响。RSF1010衍生质粒pJW323极大地抑制了菌株作为VirE2供体的能力,但仅部分抑制了来自virE2突变体的T链转移。此外,我们表明,通过细胞外互补分析,所有测试的virB基因对于VirE2和未包裹的T链的移动都是必需的。我们的结果与一个模型一致,即RSF1010质粒或其中间体与T链和VirE2竞争一个共同的转运位点。