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A bipartite signal mediates the transfer of type IV secretion substrates of Bartonella henselae into human cells

机译:双向信号介导半夏巴尔通体的IV型分泌底物转移到人类细胞中

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摘要

Bacterial type IV secretion (T4S) systems mediate the transfer of macromolecular substrates into various target cells, e.g., the conjugative transfer of DNA into bacteria or the transfer of virulence proteins into eukaryotic host cells. The T4S apparatus VirB of the vascular tumor-inducing pathogen Bartonella henselae causes subversion of human endothelial cell (HEC) function. Here we report the identification of multiple protein substrates of VirB, which, upon translocation into HEC, mediate all known VirB-dependent cellular changes. These Bartonella-translocated effector proteins (Beps) A-G are encoded together with the VirB system and the T4S coupling protein VirD4 on a Bartonella-specific pathogenicity island. The Beps display a modular architecture, suggesting an evolution by extensive domain duplication and reshuffling. The C terminus of each Bep harbors at least one copy of the Bep-intracellular delivery domain and a short positively charged tail sequence. This biparte C terminus constitutes a transfer signal that is sufficient to mediate VirB/VirD4-dependent intracellular delivery of reporter protein fusions. The Bep-intracellular delivery domain is also present in conjugative relaxases of bacterial conjugation systems. We exemplarily show that the C terminus of such a conjugative relaxase mediates protein transfer through the Bartonella henselae VirB/VirD4 system into HEC. Conjugative relaxases may thus represent the evolutionary origin of the here defined T4S signal for protein transfer into human cells.
机译:细菌IV型分泌(T4S)系统介导大分子底物转移到各种靶细胞中,例如将DNA结合转移到细菌中或将毒性蛋白转移到真核宿主细胞中。诱导血管肿瘤的病原体汉氏巴尔通体的T4S装置VirB会破坏人类内皮细胞(HEC)功能。在这里,我们报告鉴定VirB的多种蛋白质底物,这些底物在易位入HEC后介导所有已知的VirB依赖性细胞变化。这些Bartonella易位效应蛋白(Beps)A-G与VirB系统和T4S偶联蛋白VirD4一起编码在Bartonella特定的致病岛上。 Beps显示了模块化的体系结构,表明通过广泛的域复制和改组进行了演进。每个Bep的C末端具有至少一个Bep细胞内递送结构域的拷贝和短的带正电的尾序列。该二部分C末端构成足以介导报告蛋白融合体的VirB / VirD4依赖性细胞内递送的转移信号。在细菌缀合系统的缀合松弛酶中也存在Bep细胞内递送结构域。我们示例性地显示,这种共轭松弛酶的C端介导了通过汉氏巴尔通体VirB / VirD4系统进入HEC的蛋白质转移。因此,结合松弛酶可以代表此处定义的T4S信号的进化起源,该信号用于蛋白质转移到人细胞中。

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