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农杆菌 VirB8 二聚体界面对于 IV 型分泌系统的功能、稳定性以及 VirB2 与核心复合物的结合是重要的。

The dimer interface of Agrobacterium tumefaciens VirB8 is important for type IV secretion system function, stability, and association of VirB2 with the core complex.

机构信息

McMaster University, Department of Biology, 1280 Main St. West, Hamilton, ON L8S 4K1, Canada.

出版信息

J Bacteriol. 2011 May;193(9):2097-106. doi: 10.1128/JB.00907-10. Epub 2011 Mar 11.

DOI:10.1128/JB.00907-10
PMID:21398549
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3133091/
Abstract

Type IV secretion systems are virulence factors used by many gram-negative bacteria to translocate macromolecules across the cell envelope. VirB8 is an essential inner membrane component of type IV secretion systems, and it is believed to form a homodimer. In the absence of VirB8, the levels of several other VirB proteins were reduced (VirB1, VirB3, VirB4, VirB5, VirB6, VirB7, and VirB11) in Agrobacterium tumefaciens, underlining its importance for complex stability. To assess the importance of dimerization, we changed residues at the predicted dimer interface (V97, A100, Q93, and E94) in order to strengthen or to abolish dimerization. We verified the impact of the changes on dimerization in vitro with purified V97 variants, followed by analysis of the in vivo consequences in a complemented virB8 deletion strain. Dimer formation was observed in vivo after the introduction of a cysteine residue at the predicted interface (V97C), and this variant supported DNA transfer, but the formation of elongated T pili was not detected by the standard pilus isolation technique. Variants with changes at V97 and A100 that weaken dimerization did not support type IV secretion system functions. The T-pilus component VirB2 cofractionated with high-molecular-mass core protein complexes extracted from the membranes, and the presence of VirB8 as well as its dimer interface were important for this association. We conclude that the VirB8 dimer interface is required for T4SS function, for the stabilization of many VirB proteins, and for targeting of VirB2 to the T-pilus assembly site.

摘要

IV 型分泌系统是许多革兰氏阴性菌用来将大分子穿过细胞包膜转运的毒力因子。VirB8 是 IV 型分泌系统的必需内膜成分,据信它形成同源二聚体。在根癌农杆菌中,缺乏 VirB8 时,几种其他 VirB 蛋白的水平降低(VirB1、VirB3、VirB4、VirB5、VirB6、VirB7 和 VirB11),这突出了其对复合物稳定性的重要性。为了评估二聚化的重要性,我们改变了预测二聚体界面上的残基(V97、A100、Q93 和 E94),以增强或消除二聚化。我们用纯化的 V97 变体在体外验证了这些变化对二聚化的影响,然后在补充 virB8 缺失菌株中分析了体内后果。在预测界面(V97C)引入半胱氨酸残基后,观察到体内二聚体形成,该变体支持 DNA 转移,但标准菌毛分离技术未检测到伸长 T 菌毛的形成。在弱化二聚化的 V97 和 A100 发生变化的变体中,不支持 IV 型分泌系统功能。T 菌毛成分 VirB2 与从膜中提取的高分子质量核心蛋白复合物共分离,并且 VirB8 及其二聚体界面的存在对于这种关联很重要。我们得出结论,VirB8 二聚体界面是 T4SS 功能所必需的,对于许多 VirB 蛋白的稳定以及将 VirB2 靶向 T 菌毛组装位点都是必需的。

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Quantitative analysis of VirB8-VirB9-VirB10 interactions provides a dynamic model of type IV secretion system core complex assembly.定量分析 VirB8-VirB9-VirB10 相互作用提供了 IV 型分泌系统核心复合物组装的动态模型。
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Agrobacterium tumefaciens type IV secretion protein VirB3 is an inner membrane protein and requires VirB4, VirB7, and VirB8 for stabilization.根癌农杆菌 IV 型分泌蛋白 VirB3 是一种内膜蛋白,其稳定性需要 VirB4、VirB7 和 VirB8 的支持。
J Bacteriol. 2010 Jun;192(11):2830-8. doi: 10.1128/JB.01331-09. Epub 2010 Mar 26.
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Plant proteins involved in Agrobacterium-mediated genetic transformation.参与农杆菌介导的遗传转化的植物蛋白。
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Agrobacterium type IV secretion system and its substrates form helical arrays around the circumference of virulence-induced cells.农杆菌 IV 型分泌系统及其底物在诱导毒力的细胞周围形成螺旋状排列。
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Structure of the outer membrane complex of a type IV secretion system.IV 型分泌系统外膜复合物的结构。
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Interactions between Brucella suis VirB8 and its homolog TraJ from the plasmid pSB102 underline the dynamic nature of type IV secretion systems.猪布鲁氏菌VirB8与其来自质粒pSB102的同源物TraJ之间的相互作用突显了IV型分泌系统的动态性质。
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