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Activities of virE1 and the VirE1 Secretion Chaperone in Export of the Multifunctional VirE2 Effector via an Agrobacterium Type IV Secretion Pathway

机译:virE1和VirE1分泌伴侣蛋白通过农杆菌IV型分泌途径输出多功能VirE2效应子的活性

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摘要

Agrobacterium tumefaciens uses a type IV secretion system to deliver oncogenic nucleoprotein particles and effector proteins, such as the multifunctional VirE2 protein, to plant cells. In this study, we examined the function of virE1 and its product, the VirE1 secretion chaperone, in mediating VirE2 export. A nonpolar virE1 null mutant accumulated low levels of VirE2, and trans expression of virE1 in this mutant only partially restored VirE2 abundance. Deletion of virE1 did not affect transcription but decreased translation of virE2, as shown by analysis of lacZ transcriptional and translational fusions. VirE2 was stable for a prolonged period, more than 6 h, when it was expressed in cis with virE1, and it exhibited half-lives of about 2 h when it was expressed in trans with virE1 and less than 10 min when it was expressed in the absence of virE1, as shown by pulse-chase experiments. VirE1 stabilized VirE2 via an interaction with a domain near the N terminus of VirE2, as shown by analyses of VirE2 truncation and insertion mutants synthesized in A. tumefaciens. VirE1 self-association was demonstrated by using bacteriophage λ cI repressor fusion and pull-down assays, and evidence of VirE1 homomultimerization in vivo was obtained by native polyacrylamide gel electrophoresis and gel filtration chromatography. A putative VirE1-VirE2 complex with a molecular mass of about 70 to 80 kDa was detected by gel filtration chromatography of extracts from wild-type cells, whereas higher-order VirE2 complexes or aggregates were detected in extracts from a virE1 mutant. Taken together, our findings show that virE1 contributes in several ways to VirE2 export:(i) virE1 regulates efficient virE2 translation in the context of expression from the native PvirE promoter; (ii) the VirE1 secretion chaperone stabilizes VirE2, most probably via an interaction with an N-terminal domain; and (iii) VirE1 forms a VirE1-VirE2 complex with a predicted 2:1 stoichiometry that inhibits assembly of higher-order VirE2 complexes or aggregates.
机译:根癌土壤杆菌使用IV型分泌系统将致癌核蛋白颗粒和效应蛋白(例如多功能VirE2蛋白)传递至植物细胞。在这项研究中,我们检查了virE1及其产物VirE1分泌伴侣在介导VirE2出口中的功能。非极性virE1空突变体积累了低水平的VirE2,而在该突变体中virE1的反式表达仅部分恢复了VirE2的丰度。如lacZ转录和翻译融合分析所示,删除virE1不会影响转录,但会降低virE2的翻译。当与virE1一起顺式表达时,VirE2可以长时间稳定超过6小时;当与virE1反式表达时,VirE2的半衰期约为2小时,而当与virE1一起表达时,其半衰期少于10分钟。如脉冲追踪实验所示,没有virE1。 VirE1通过与VirE2的N末端附近的域相互作用来稳定VirE2,如通过分析A. tumefaciens中合成的VirE2截短和插入突变体所示。通过噬菌体λcI阻遏物融合和下拉检测法证明了VirE1的自我缔合,并通过天然聚丙烯酰胺凝胶电泳和凝胶过滤色谱获得了体内VirE1同源多聚的证据。通过凝胶过滤色谱法从野生型细胞提取物中检测出分子量约为70至80 kDa的推定VirE1-VirE2复合物,而在virE1突变体的提取物中检测到更高阶的VirE2复合物或聚集体。综上所述,我们的发现表明,virE1以多种方式促进VirE2的输出:(i)virE1在天然PvirE启动子表达的背景下调节有效的virE2翻译; (ii)VirE1分泌伴侣可稳定VirE2,最有可能是通过与N末端结构域的相互作用来实现的; (iii)VirE1形成VirE1-VirE2复合物,其化学计量比为2:1,抑制了更高阶VirE2复合物或聚集体的组装。

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