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快速筛选 78 种禽蛋清糖蛋白微阵列上的特定糖基化和病原体相互作用。

Rapid screening for specific glycosylation and pathogen interactions on a 78 species avian egg white glycoprotein microarray.

机构信息

Glycoscience Group, National Centre for Biomedical Engineering Science, National University of Ireland Galway, Galway, Ireland.

Regenerative Medicine Institute, National University of Ireland Galway, Galway, Ireland.

出版信息

Sci Rep. 2017 Jul 25;7(1):6477. doi: 10.1038/s41598-017-06797-6.

Abstract

There is an urgent need for discovery of novel antimicrobials and carbohydrate-based anti-adhesive strategies are desirable as they may not promote resistance. Discovery of novel anti-adhesive molecules from natural product libraries will require the use of a high throughput screening platform. Avian egg white (EW) provides nutrition for the embryo and protects against infection, with glycosylation responsible for binding certain pathogens. In this study, a microarray platform of 78 species of avian EWs was developed and profiled for glycosylation using a lectin panel with a wide range of carbohydrate specificities. The dominating linkages of sialic acid in EWs were determined for the first time using the lectins MAA and SNA-I. EW glycosylation similarity among the different orders of birds did not strictly depend on phylogenetic relationship. The interactions of five strains of bacterial pathogens, including Escherichia coli, Staphylococcus aureus and Vibrio cholera, identified a number of EWs as potential anti-adhesives, with some as strain- or species-specific. Of the two bacterial toxins examined, shiga-like toxin 1 subunit B bound to ten EWs with similar glycosylation more intensely than pigeon EW. This study provides a unique platform for high throughput screening of natural products for specific glycosylation and pathogen interactions. This platform may provide a useful platform in the future for discovery of anti-adhesives targeted for strain and species specificity.

摘要

迫切需要发现新的抗菌药物,而基于碳水化合物的抗黏附策略是理想的,因为它们可能不会促进耐药性的产生。从天然产物文库中发现新的抗黏附分子需要使用高通量筛选平台。禽类蛋清 (EW) 为胚胎提供营养,并防止感染,糖基化负责结合某些病原体。在这项研究中,开发了一个由 78 种禽类 EW 组成的微阵列平台,并使用具有广泛碳水化合物特异性的凝集素面板对其进行了糖基化分析。首次使用凝集素 MAA 和 SNA-I 确定了 EW 中唾液酸的主要连接方式。不同鸟类目之间 EW 的糖基化相似性并不严格取决于系统发育关系。五种细菌病原体菌株(包括大肠杆菌、金黄色葡萄球菌和霍乱弧菌)的相互作用鉴定出一些 EW 可能是潜在的抗黏附剂,其中一些具有菌株或物种特异性。在所检查的两种细菌毒素中,志贺样毒素 1 亚单位 B 与十种具有相似糖基化的 EW 的结合强度比鸽子 EW 更强。本研究为高通量筛选天然产物的特定糖基化和病原体相互作用提供了一个独特的平台。该平台未来可能为发现针对菌株和物种特异性的抗黏附剂提供有用的平台。

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