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HpaC Controls Substrate Specificity of the Xanthomonas Type III Secretion System

机译:HpaC控制Xanthomonas III型分泌系统的底物特异性

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摘要

The Gram-negative bacterial plant pathogen Xanthomonas campestris pv. vesicatoria employs a type III secretion (T3S) system to inject bacterial effector proteins into the host cell cytoplasm. One essential pathogenicity factor is HrpB2, which is secreted by the T3S system. We show that secretion of HrpB2 is suppressed by HpaC, which was previously identified as a T3S control protein. Since HpaC promotes secretion of translocon and effector proteins but inhibits secretion of HrpB2, HpaC presumably acts as a T3S substrate specificity switch protein. Protein–protein interaction studies revealed that HpaC interacts with HrpB2 and the C-terminal domain of HrcU, a conserved inner membrane component of the T3S system. However, no interaction was observed between HpaC and the full-length HrcU protein. Analysis of HpaC deletion derivatives revealed that the binding site for the C-terminal domain of HrcU is essential for HpaC function. This suggests that HpaC binding to the HrcU C terminus is key for the control of T3S. The C terminus of HrcU also provides a binding site for HrpB2; however, no interaction was observed with other T3S substrates including pilus, translocon and effector proteins. This is in contrast to HrcU homologs from animal pathogenic bacteria suggesting evolution of distinct mechanisms in plant and animal pathogenic bacteria for T3S substrate recognition.
机译:革兰氏阴性细菌植物病原体Xanthomonas campestris pv。 vesicatoria采用III型分泌(T3S)系统将细菌效应蛋白注射到宿主细胞的细胞质中。 HrpB2是一种重要的致病因子,它是T3S系统分泌的。我们表明,HpaC抑制HrpB2的分泌,HpaC先前被确定为T3S对照蛋白。由于HpaC促进转运蛋白和效应蛋白的分泌,但抑制HrpB2的分泌,因此HpaC可能充当T3S底物特异性转换蛋白。蛋白质间相互作用研究表明,HpaC与HrpB2和HrcU(T3S系统的保守内膜成分)的C末端结构域相互作用。但是,没有观察到HpaC和全长HrcU蛋白之间的相互作用。 HpaC缺失衍生物的分析表明,HrcU C末端结构域的结合位点对于HpaC功能至关重要。这表明HpaC与HrcU C末端的结合是控制T3S的关键。 HrcU的C末端也提供了HrpB2的结合位点。但是,未观察到与其他T3S底物包括菌毛,translocon和效应蛋白的相互作用。这与来自动物病原菌的HrcU同源物相反,表明植物和动物病原菌中不同的机制进化为T3S底物识别。

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