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Agrobacterium tumefaciens VirB6 Protein Participates in Formation of VirB7 and VirB9 Complexes Required for Type IV Secretion

机译:根癌土壤杆菌VirB6蛋白参与IV型分泌所需的VirB7和VirB9复合物的形成

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摘要

This study characterized the contribution of Agrobacterium tumefaciens VirB6, a polytopic inner membrane protein, to the formation of outer membrane VirB7 lipoprotein and VirB9 protein multimers required for type IV secretion. VirB7 assembles as a disulfide cross-linked homodimer that associates with the T pilus and a VirB7-VirB9 heterodimer that stabilizes other VirB proteins during biogenesis of the secretion machine. Two presumptive VirB protein complexes, composed of VirB6, VirB7, and VirB9 and of VirB7, VirB9, and VirB10, were isolated by immunoprecipitation or glutathione S-transferase pulldown assays from detergent-solubilized membrane extracts of wild-type A348 and a strain producing only VirB6 through VirB10 among the VirB proteins. To examine the biological importance of VirB6 complex formation for type IV secretion, we monitored the effects of nonstoichiometric VirB6 production and the synthesis of VirB6 derivatives with 4-residue insertions (VirB6.i4) on VirB7 and VirB9 multimerization, T-pilus assembly, and substrate transfer. A virB6 gene deletion mutant accumulated VirB7 dimers at diminished steady-state levels, whereas complementation with a plasmid bearing wild-type virB6 partially restored accumulation of the dimers. VirB6 overproduction was correlated with formation of higher-order VirB9 complexes or aggregates and also blocked substrate transfer without a detectable disruption of T-pilus production; these phenotypes were displayed by cells grown at 28°C, a temperature that favors VirB protein turnover, but not by cells grown at 20°C. Strains producing several VirB6.i4 mutant proteins assembled novel VirB7 and VirB9 complexes detectable by nonreducing sodium dodecyl sulfate-polyacrylamide gel electrophoresis, and two strains producing the D60.i4 and L191.i4 mutant proteins translocated IncQ plasmid and VirE2 effector protein substrates in the absence of a detectable T pilus. Our findings support a model that VirB6 mediates formation of VirB7 and VirB9 complexes required for biogenesis of the T pilus and the secretion channel.
机译:这项研究的特点是土壤杆菌农杆菌VirB6(一种多形内膜蛋白)对IV型分泌所需的外膜VirB7脂蛋白和VirB9蛋白多聚体形成的贡献。 VirB7组装为与T菌毛缔合的二硫键交联的同型二聚体,以及在分泌机器的生物发生过程中稳定其他VirB蛋白的VirB7-VirB9异二聚体。通过免疫沉淀或谷胱甘肽S-转移酶下拉试验从野生型A348和仅产生一种菌株的去污剂溶解膜提取物中分离出两种推测的VirB蛋白复合物,分别由VirB6,VirB7和VirB9以及VirB7,VirB9和VirB10组成。 VirB蛋白中的VirB6至VirB10。为了检查VirB6复合物形成对于IV型分泌的生物学重要性,我们监测了非化学计量的VirB6产生和具有4个残基插入的VirB6衍生物(VirB6.i4)的合成对VirB7和VirB9多聚化,T组装的影响,以及底物转移。 virB6基因缺失突变体在稳定的稳态水平上积累了VirB7二聚体,而与带有野生型virB6的质粒互补则部分恢复了二聚体的积累。 VirB6过量生产与高阶VirB9复合物或聚集体的形成相关,并且还可以阻止底物转移,而不会检测到T菌毛的产生。这些表型是由在28°C(有利于VirB蛋白更新的温度)下生长的细胞展示的,而不是由在20°C下生长的细胞展示的。产生数种VirB6.i4突变蛋白的菌株组装了可通过非还原十二烷基硫酸钠-聚丙烯酰胺凝胶电泳检测到的新型VirB7和VirB9复合物,以及两株产生D60.i4和L191.i4突变蛋白的菌株,它们在不存在的情况下易位IncQ质粒和VirE2效应蛋白底物可检测的T菌毛。我们的发现支持了一个模型,即VirB6介导了T菌毛和分泌通道的生物发生所需的VirB7和VirB9复合物的形成。

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