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Use of Recombinant Mucin Glycoprotein to Assess the Interaction of the Gastric Pathogen Helicobacter pylori with the Secreted Human Mucin MUC5AC

机译:使用重组粘蛋白糖蛋白评估胃病原体幽门螺杆菌与分泌的人类粘蛋白MUC5AC的相互作用

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摘要

There is intense interest in how bacteria interact with mucin glycoproteins in order to colonise mucosal surfaces. In this study, we have assessed the feasibility of using recombinant mucin glycoproteins to study the interaction of the gastric pathogen Helicobacter pylori with MUC5AC, a mucin which the organism exhibits a distinct tropism for. Stable clonal populations of cells expressing a construct encoding for a truncated version of MUC5AC containing N- and C-termini interspersed with two native tandem repeat sequences (N + 2TR + C) were generated. Binding of H. pylori to protein immunoprecipitated from cell lysates and supernatants was assessed. High molecular weight mucin could be detected in both cell lysates and supernatants of transfected cells. Recombinant protein formed high molecular weight oligomers, was both N and O glycosylated, underwent cleavage similar to native MUC5AC and was secreted from the cell. H. pylori bound better to secreted mucin than intracellular mucin suggesting that modifications on extracellular MUC5AC promoted binding. Lectin analysis demonstrated that secreted mucin was differentially glycosylated compared to intracellular mucin. H. pylori also bound to a recombinant C-terminus MUC5AC protein, but binding to this protein did not inhibit binding to the N + 2TR + C protein. This study demonstrates the feasibility of using recombinant mucins containing tandem repeat sequences to assess microbial mucin interactions.
机译:人们对细菌如何与粘蛋白糖蛋白相互作用从而定居在粘膜表面有浓厚的兴趣。在这项研究中,我们评估了使用重组粘蛋白糖蛋白研究胃病原体幽门螺杆菌与MUC5AC相互作用的可能性,MUC5AC是一种对生物体表现出独特嗜性的粘蛋白。产生了稳定的细胞克隆克隆群,这些细胞表达了编码截短形式的MUC5AC的构建体,其中包含两个天然串联重复序列(N + 2TR + C)和N-和C-末端。评估了幽门螺杆菌与从细胞裂解物和上清液中免疫沉淀的蛋白质的结合。在细胞裂解液和转染细胞的上清液中都可以检测到高分子量粘蛋白。重组蛋白形成高分子量寡聚体,被N和O糖基化,与天然MUC5AC相似地被裂解,并从细胞中分泌出来。幽门螺杆菌与分泌的粘蛋白的结合要比细胞内的粘蛋白好,这表明细胞外MUC5AC的修饰促进了结合。凝集素分析表明,与细胞内粘蛋白相比,分泌的粘蛋白差异糖基化。幽门螺杆菌还与重组C端MUC5AC蛋白结合,但与该蛋白的结合并不抑制与N + 2TR + C蛋白的结合。这项研究证明了使用含有串联重复序列的重组粘蛋白评估微生物粘蛋白相互作用的可行性。

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