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Agrobacterium VirB10, an ATP energy sensor required for type IV secretion

机译:农杆菌VirB10,IV型分泌所需的ATP能量传感器

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摘要

Bacteria use type IV secretion systems (T4SS) to translocate DNA and protein substrates to target cells of phylogenetically diverse taxa. Recently, by use of an assay termed transfer DNA immunoprecipitation (TrIP), we described the translocation route for a DNA substrate [T-DNA, portion of the Ti (tumor-inducing) plasmid that is transferred to plant cells] of the Agrobacterium tumefaciens VirB/D4 T4SS in terms of a series of temporally and spatially ordered substrate contacts with subunits of the secretion channel. Here, we report that the bitopic inner membrane protein VirB10 undergoes a structural transition in response to ATP utilization by the VirD4 and VirB11 ATP-binding subunits, as monitored by protease susceptibility. VirB10 interacts with inner membrane VirD4 independently of cellular energetic status, whereas the energy-induced conformational change is required for VirB10 complex formation with an outer membrane-associated heterodimer of VirB7 lipoprotein and VirB9, as shown by coimmunoprecipitation. Under these conditions, the T-DNA substrate is delivered from the inner membrane channel components VirB6 and VirB8 to periplasmic and outer membrane-associated VirB2 pilin and VirB9. We propose that VirD4 and VirB11 coordinate the ATP-dependent formation of a VirB10 “bridge” between inner and outer membrane subassemblies of the VirB/D4 T4SS, and that this morphogenetic event is required for T-DNA translocation across the A. tumefaciens cell envelope.
机译:细菌使用IV型分泌系统(T4SS)将DNA和蛋白质底物转运至系统发育多样性分类单元的靶细胞。最近,通过使用一种称为转移DNA免疫沉淀(TrIP)的分析方法,我们描述了根癌土壤杆菌的DNA底物[T-DNA,Ti(诱导肿瘤)质粒的一部分转移到植物细胞中]的转运途径就一系列在时间和空间上有序的底物与分泌通道的亚单位接触而言,VirB / D4 T4SS。在这里,我们报告双位内膜蛋白VirB10响应VirD4和VirB11 ATP结合亚基对ATP的利用而发生结构转变,如蛋白酶敏感性所监测。 VirB10与内膜VirD4相互作用,而与细胞的能量状态无关,而VirB7脂蛋白和VirB9的外膜相关异二聚体形成VirB10复合物需要能量诱导的构象变化,如共免疫沉淀法所示。在这些条件下,T-DNA底物从内膜通道组分VirB6和VirB8传递到与周质和外膜相关的VirB2菌毛蛋白和VirB9。我们建议VirD4和VirB11协调VirB / D4 T4SS的内膜和外膜子组件之间的VirB10“桥”的ATP依赖性形成,并且该形态发生事件是跨根癌土壤杆菌T-DNA转运所需的。

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