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FedF 菌毛黏附素对组织血型抗原结合的结构解析。

Structural insight in histo-blood group binding by the F18 fimbrial adhesin FedF.

机构信息

Structural & Molecular Microbiology, VIB Department of Structural Biology, VIB, Brussels, Belgium.

出版信息

Mol Microbiol. 2012 Oct;86(1):82-95. doi: 10.1111/j.1365-2958.2012.08174.x. Epub 2012 Aug 13.

Abstract

F18-positive enterotoxigenic and Shiga toxin-producing Escherichia coli are responsible for post-weaning diarrhoea and oedema disease in pigs and lead to severe production losses in the farming industry. F18 fimbriae attach to the small intestine of young piglets by latching onto glycosphingolipids with A/H blood group determinants on type 1 core. We demonstrate the N-terminal domain of the F18 fimbrial subunit FedF to be responsible for ABH-mediated attachment and present its X-ray structure in ligand-free form and bound to A and B type 1 hexaoses. The FedF lectin domain comprises a 10-stranded immunoglobulin-like β-sandwich. Three linear motives, Q(47) -N(50), H(88) -S(90) and R(117) -T(119), form a shallow glycan binding pocket near the tip of the domain that is selective for type 1 core glycans in extended conformation. In addition to the glycan binding pocket, a polybasic loop on the membrane proximal surface of FedF lectin domain is shown to be required for binding to piglet enterocytes. Although dispensable for ABH glycan recognition, the polybasic surface adds binding affinity in the context of the host cell membrane, a mechanism that is proposed to direct ABH-glycan binding to cell-bound glycosphingolipids and could allow bacteria to avoid clearance by secreted glycoproteins.

摘要

F18 阳性肠产毒和志贺毒素大肠杆菌是引起仔猪断奶后腹泻和水肿病的原因,并导致农业产业严重的生产损失。F18 菌毛通过与 1 型核心上具有 A/H 血型决定簇的糖脂结合,附着在仔猪的小肠上。我们证明 F18 菌毛亚基 FedF 的 N 端结构域负责 ABH 介导的附着,并呈现其无配体形式和与 A 型和 B 型 1 型六糖结合的 X 射线结构。FedF 凝集素结构域包含一个 10 链免疫球蛋白样β-折叠。三个线性基序 Q(47)-N(50)、H(88)-S(90)和 R(117)-T(119)在结构域的尖端附近形成一个浅聚糖结合口袋,该口袋对伸展构象中的 1 型核心聚糖具有选择性。除了聚糖结合口袋外,FedF 凝集素结构域膜近端表面上的多碱性环被证明是与仔猪肠细胞结合所必需的。尽管多碱性表面对于 ABH 聚糖识别是可有可无的,但它增加了在宿主细胞膜环境中的结合亲和力,这一机制被认为可以将 ABH-聚糖结合引导到细胞结合的糖脂上,并允许细菌避免被分泌的糖蛋白清除。

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