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Dimerization of VirD2 Binding Protein Is Essential for Agrobacterium Induced Tumor Formation in Plants

机译:VirD2结合蛋白的二聚化是农杆菌诱导植物中肿瘤形成所必需的

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摘要

The Type IV Secretion System (T4SS) is the only bacterial secretion system known to translocate both DNA and protein substrates. The VirB/D4 system from Agrobacterium tumefaciens is a typical T4SS. It facilitates the bacteria to translocate the VirD2-T-DNA complex to the host cell cytoplasm. In addition to protein-DNA complexes, the VirB/D4 system is also involved in the translocation of several effector proteins, including VirE2, VirE3 and VirF into the host cell cytoplasm. These effector proteins aid in the proper integration of the translocated DNA into the host genome. The VirD2-binding protein (VBP) is a key cytoplasmic protein that recruits the VirD2–T-DNA complex to the VirD4-coupling protein (VirD4 CP) of the VirB/D4 T4SS apparatus. Here, we report the crystal structure and associated functional studies of the C-terminal domain of VBP. This domain mainly consists of α-helices, and the two monomers of the asymmetric unit form a tight dimer. The structural analysis of this domain confirms the presence of a HEPN (higher eukaryotes and prokaryotes nucleotide-binding) fold. Biophysical studies show that VBP is a dimer in solution and that the HEPN domain is the dimerization domain. Based on structural and mutagenesis analyses, we show that substitution of key residues at the interface disrupts the dimerization of both the HEPN domain and full-length VBP. In addition, pull-down analyses show that only dimeric VBP can interact with VirD2 and VirD4 CP. Finally, we show that only Agrobacterium harboring dimeric full-length VBP can induce tumors in plants. This study sheds light on the structural basis of the substrate recruiting function of VBP in the T4SS pathway of A. tumefaciens and in other pathogenic bacteria employing similar systems.
机译:IV型分泌系统(T4SS)是已知的可同时转移DNA和蛋白质底物的唯一细菌分泌系统。来自根癌土壤杆菌的VirB / D4系统是典型的T4SS。它促进细菌将VirD2-T-DNA复合物转运到宿主细胞的细胞质。除蛋白质-DNA复合物外,VirB / D4系统还参与了几种效应蛋白的转运,包括VirE2,VirE3和VirF进入宿主细胞质。这些效应蛋白有助于将易位DNA正确整合到宿主基因组中。 VirD2结合蛋白(VBP)是将VirD2-T-DNA复合体募集到VirB / D4 T4SS仪器的VirD4偶联蛋白(VirD4 CP)的关键胞质蛋白。在这里,我们报告VBP C端域的晶体结构和相关的功能研究。该结构域主要由α-螺旋组成,不对称单元的两个单体形成紧密的二聚体。该结构域的结构分析证实了HEPN(较高的真核生物和原核生物核苷酸结合)折叠的存在。生物物理研究表明,VBP是溶液中的二聚体,而HEPN域是二聚化域。基于结构和诱变分析,我们表明在界面上关键残基的取代会破坏HEPN结构域和全长VBP的二聚化。此外,下拉分析显示只有二聚体VBP可以与VirD2和VirD4 CP相互作用。最后,我们表明只有带有二聚体全长VBP的农杆菌能够诱导植物中的肿瘤。这项研究阐明了根癌农杆菌和其他类似病原菌的T4SS途径中VBP的底物募集功能的结构基础。

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