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首页> 外文期刊>Fish & Shellfish Immunology >Oligomerisation and carbohydrate binding in an Atlantic salmon serum C-type lectin consistent with non-self recognition
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Oligomerisation and carbohydrate binding in an Atlantic salmon serum C-type lectin consistent with non-self recognition

机译:大西洋鲑血清C型凝集素中的低聚和碳水化合物结合与非自我识别相符

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摘要

A C-type lectin was previously isolated from the blood of healthy Atlantic salmon (Salmo salar) and this salmon serum lectin (SSL) was found to opsonise bacteria. Selective binding to bacteria in vivo requires that the lectin be able to recognise a carbohydrate pattern on the bacterial surface distinguishable from that of the host. In order to investigate this selectivity in the lectin, a phage-display antibody was prepared and then used for detection of lectin by Western blotting. A carbohydrate binding-inhibition assay with Western blot detection of the lectin showed mannose to be the primary ligand and related sugars including glucose, N-acetylglucosamine and methyl alpha-D-mannopyranoside to be additional ligands of this lectin. The SSL in serum detected by Western blotting was shown to form a complex oligomer. These results show that the salmon serum lectin is oligomeric in blood and that it recognizes a broad spectrum of carbohydrates with optimal binding to mannose. The lectin might therefore be an ideal opsonin for multiple salmon pathogens with carbohydrate arrays on their surfaces. No similar lectins were identified in the sera of other fish by Western blotting using the phage-display antibody. Molecular analysis will be required in order to determine whether homologous lectins are expressed in related fish species. It is anticipated that similar lectins might have related pathogen recognition roles in divergent fish species. Crown Copyright
机译:先前从健康的大西洋鲑鱼(Salmo salar)的血液中分离出一种C型凝集素,并且发现该鲑鱼血清凝集素(SSL)可以调理细菌。体内与细菌的选择性结合要求凝集素能够识别细菌表面上与宿主表面不同的碳水化合物模式。为了研究在凝集素中的这种选择性,制备了噬菌体展示抗体,然后用于通过蛋白质印迹法检测凝集素。用Western印迹检测凝集素的碳水化合物结合抑制试验表明,甘露糖是主要的配体,而相关的糖(包括葡萄糖,N-乙酰氨基葡萄糖和甲基α-D-甘露吡喃糖苷)是该凝集素的其他配体。通过蛋白质印迹法检测到的血清中的SSL被证明形成了复杂的寡聚物。这些结果表明,鲑鱼血清凝集素在血液中是低聚的,并且它能识别与最佳结合甘露糖的各种碳水化合物。因此,凝集素可能是多种鲑鱼病原体表面具有碳水化合物阵列的理想调理素。使用噬菌体展示抗体通过蛋白质印迹法在其他鱼类的血清中未发现类似的凝集素。为了确定同源凝集素是否在相关鱼类中表达,将需要进行分子分析。预计相似的凝集素在不同鱼类中可能具有相关的病原体识别作用。皇冠版权

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