Blocking Vibrio cholerae-mediated hemagglutination with short peptide antagonists

Biofilms Pub Date : 2020-07-01 DOI:10.5194/biofilms9-121
Shuaiqi Guo, Cameron J. Lloyd, B. Kinrade, Mustafa Sherik, I. Voets, K. Klose, P. Davies
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Abstract

Many bacteria use repeats-in-toxin (RTX) adhesins to mediate binding to host cells and facilitate subsequent colonisation and infection by forming biofilms. Vibrio cholerae, the causative agent of cholera, uses a 230-kDa RTX adhesin, FrhA, to facilitate intestinal colonization. FrhA also mediates hemagglutination of red-blood cells (erythrocytes). Here we have demonstrated that the hemagglutination capability of FrhA is localized to a ~ 20-kDa domain near its C terminus. Bioinformatic analyses indicated this erythrocyte-binding domain (VcEBD) is 65% identical to a peptide-binding module found in the 1.5-MDa ice-binding RTX adhesin that helps its Antarctic bacterium, Marinomonas primoryensis, form symbiotic biofilms with diatoms on the underside of sea ice. This suggested that the FrhA binds V. cholerae to proteins present on the cell surface of erythrocytes. X-ray crystallography revealed that VcEBD has an oblong β-sandwich fold with a shallow, Ca2+-dependent ligand-binding cavity that can anchor a peptidyl ligand with a free terminal carboxyl group. Using a structure-guided approach, we screened a small library of ~ 60 short peptides and optimized the affinity of VcEBD’s peptidyl ligands by roughly 1,000-fold. Importantly, the high-affinity ligands are effective at blocking V. cholerae from binding to erythrocytes at nano-molar concentrations. Structures of VcEBD in complex with three different peptides further elucidated the molecular basis for their interactions, which sets the stage for the development of ligand-based antagonists that may help disrupt V. cholerae interaction with intestinal cells to prevent or treat cholera. With the spread of antibiotic-resistant pathogenic bacteria, this work sheds light on an anti-adhesion approach for combating bacterial infections without the excessive use of antibiotics.

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短肽拮抗剂阻断霍乱弧菌介导的血凝
许多细菌使用毒素(RTX)粘附素中的重复序列介导与宿主细胞的结合,并通过形成生物膜促进随后的定植和感染。霍乱的病原体霍乱弧菌使用230 kDa的RTX粘附素FrhA来促进肠道定植。FrhA还介导红细胞(红细胞)的血凝作用。在这里,我们已经证明FrhA的血凝能力定位于其C末端附近的~20kDa结构域。生物信息学分析表明,这种红细胞结合结构域(VcEBD)与1.5-MDa的冰结合RTX粘附素中发现的肽结合模块有65%的相同性,该粘附素有助于其南极细菌原始海洋藻与海冰底部的硅藻形成共生生物膜。这表明FrhA将霍乱弧菌与红细胞表面存在的蛋白质结合。X射线晶体学揭示VcEBD具有长方形的-具有浅的Ca2+依赖性配体结合腔的三明治折叠,该结合腔可以锚定具有游离末端羧基的肽基配体。使用结构引导的方法,我们筛选了约60个短肽的小文库,并优化了VcEBD的亲和力;s肽基配体增加约1000倍。重要的是,高亲和力配体在纳摩尔浓度下有效阻断霍乱弧菌与红细胞的结合。VcEBD与三种不同肽的复合物结构进一步阐明了它们相互作用的分子基础,这为开发基于配体的拮抗剂奠定了基础,该拮抗剂可能有助于破坏霍乱弧菌与肠道细胞的相互作用,以预防或治疗霍乱。随着抗生素耐药性病原菌的传播,这项工作揭示了一种在不过度使用抗生素的情况下对抗细菌感染的抗粘连方法。
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