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首页> 外文期刊>Molecular Microbiology >Evidence that a globular conformation is not compatible with FhaC-mediated secretion of the Bordetella pertussis filamentous haemagglutinin.
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Evidence that a globular conformation is not compatible with FhaC-mediated secretion of the Bordetella pertussis filamentous haemagglutinin.

机译:球形构象与百日咳博德特氏菌丝状血凝素的FhaC介导的分泌不相容的证据。

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摘要

The 220 kDa Bordetella pertussis filamentous haemagglutinin (FHA) is the major extracellular protein of this organism. It is exported using a signal peptide-dependent pathway, and its secretion depends on one specific outer membrane accessory protein, FhaC. In this work, we have investigated the influence of conformation on the FhaC-mediated secretion of FHA using an 80kDa N-terminal FHA derivative, Fha44. In contrast to many signal peptide-dependent secretory proteins, no soluble periplasmic intermediate of Fha44 could be isolated. In addition, cell-associated Fha44 synthesized in the absence of FhaC did not remain competent for extracellular secretion upon delayed expression of FhaC, indicating that the translocation steps across the cytoplasmic and the outer membrane might be coupled. A chimeric protein, in which the globular B subunit of the cholera toxin, CtxB, was fused at the C-terminus of Fha44, was not secreted in B. pertussis or in Escherichia coli expressing FhaC. The hybrid protein was only secreted when both disulphide bond-forming cysteines of CtxB were replaced by serines or when it was produced in DsbA- E. coli. The Fha44 portion of the secretion-incompetent hybrid protein was partly exposed on the cell surface. These results argue that the Fha44-CtxB hybrid protein transited through the periplasmic space, where disulphide bond formation is specifically catalysed, and that secretion across the outer membrane was initiated. The folded CtxB portion prevented extracellular release of the hybrid, in contrast to the more flexible CtxB domain devoid of cysteines. We propose a secretion model whereby Fha44 transits through the periplasmic space on its way to the cell surface and initiates its translocation through the outer membrane before being released from the cytoplasmic membrane. Coupling of Fha44 translocation across both membranes would delay the acquisition of its folded structure until the protein emerges from the outer membrane. Such a model would be consistent with the extensive intracellular proteolysis of FHA derivatives in B. pertussis.
机译:220 kDa百日咳博德特氏菌丝状血凝素(FHA)是该生物的主要细胞外蛋白。它通过信号肽依赖性途径输出,其分泌取决于一种特定的外膜辅助蛋白FhaC。在这项工作中,我们使用80kDa N端FHA衍生物Fha44研究了构象对FhaC介导的FHA分泌的影响。与许多信号肽依赖性分泌蛋白相反,无法分离出Fha44的可溶性周质中间体。另外,在缺乏FhaC的情况下合成的与细胞相关的Fha44在延迟FhaC表达后仍不能胜任细胞外分泌,这表明跨细胞质和外膜的转运步骤可能是耦合的。百日咳博德特氏菌或表达FhaC的大肠杆菌中不分泌一种嵌合蛋白,其中霍乱毒素的球形B亚基CtxB在Fha44的C末端融合。仅当两个CtxB的形成二硫键的半胱氨酸被丝氨酸替代时或在DsbA-E。coli中生产时,才分泌杂合蛋白。无法分泌的杂合蛋白的Fha44部分部分暴露在细胞表面。这些结果表明,Fha44-CtxB杂合蛋白穿过周质空间,在该周质空间中特异性催化了二硫键的形成,并开始了跨外膜的分泌。与没有半胱氨酸的更灵活的CtxB结构域相反,折叠的CtxB部分阻止了杂种的细胞外释放。我们提出一种分泌模型,由此Fha44在其到达细胞表面的过程中穿过周质空间,并在从细胞质膜释放之前启动其通过外膜的转运。 Fha44跨膜的易位耦合将延迟其折叠结构的获取,直到蛋白质从外膜中出来。这样的模型将与百日咳博德特氏菌中FHA衍生物的广泛的细胞内蛋白水解相一致。

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