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The Clostridium difficile Cell Wall Protein CwpV is Antigenically Variable between Strains, but Exhibits Conserved Aggregation-Promoting Function

机译:艰难梭菌细胞壁蛋白CwpV是 菌株之间抗原性可变,但展示保守 促进集聚功能

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摘要

Clostridium difficile is the main cause of antibiotic-associated diarrhea, leading to significant morbidity and mortality and putting considerable economic pressure on healthcare systems. Current knowledge of the molecular basis of pathogenesis is limited primarily to the activities and regulation of two major toxins. In contrast, little is known of mechanisms used in colonization of the enteric system. C. difficile expresses a proteinaceous array on its cell surface known as the S-layer, consisting primarily of the major S-layer protein SlpA and a family of SlpA homologues, the cell wall protein (CWP) family. CwpV is the largest member of this family and is expressed in a phase variable manner. Here we show CwpV promotes C. difficile aggregation, mediated by the C-terminal repetitive domain. This domain varies markedly between strains; five distinct repeat types were identified and were shown to be antigenically distinct. Other aspects of CwpV are, however, conserved. All CwpV types are expressed in a phase variable manner. Using targeted gene knock-out, we show that a single site-specific recombinase RecV is required for CwpV phase variation. CwpV is post-translationally cleaved at a conserved site leading to formation of a complex of cleavage products. The highly conserved N-terminus anchors the CwpV complex to the cell surface. Therefore CwpV function, regulation and processing are highly conserved across C. difficile strains, whilst the functional domain exists in at least five antigenically distinct forms. This hints at a complex evolutionary history for CwpV.
机译:艰难梭菌是抗生素相关性腹泻的主要原因,导致大量的发病和死亡,并给医疗系统带来了巨大的经济压力。目前关于发病机理的分子基础的知识主要限于两种主要毒素的活性和调节。相反,对于肠道系统定植中使用的机制知之甚少。艰难梭菌在其细胞表面表达一种蛋白质阵列,称为S层,主要由主要的S层蛋白SlpA和SlpA同源物家族(细胞壁蛋白(CWP)家族)组成。 CwpV是该家族中最大的成员,以相变方式表达。在这里,我们显示CwpV促进艰难梭菌的聚集,由C末端重复域介导。该结构域在菌株之间显着不同。鉴定出五种不同的重复类型,并显示出抗原性不同。但是,CwpV的其他方面是保守的。所有CwpV类型均以相位可变的方式表示。使用靶向的基因敲除,我们表明CwpV相变需要单个位点特异性重组酶RecV。 CwpV在保守位点被翻译后切割,导致形成切割产物复合物。高度保守的N末端将CwpV复合物锚定在细胞表面。因此,CwpV在艰难梭菌菌株中的功能,调控和加工高度保守,而功能域以至少五种抗原上不同的形式存在。这暗示了CwpV的复杂进化历史。

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