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深海盐单胞菌胞外多糖的纯化:内毒素的鉴定及有效去除方法。

Purification of the exopolysaccharide produced by Alteromonas infernus: identification of endotoxins and effective process to remove them.

机构信息

Ifremer, Laboratoire Écosystèmes Microbiens et Molécules Marines pour les Biotechnologies, EM3B, rue de l'Ile d'Yeu, 44311, Nantes, Cedex 3, France.

Université de Nantes/Inserm UMRS 1229, UFR Odontologie, 1 Place Alexis Ricordeau, 44042, Nantes, Cedex 1, France.

出版信息

Appl Microbiol Biotechnol. 2017 Sep;101(17):6597-6606. doi: 10.1007/s00253-017-8364-8. Epub 2017 Jun 23.

DOI:10.1007/s00253-017-8364-8
PMID:28646448
Abstract

Alteromonas infernus bacterium isolated from deep-sea hydrothermal vents can produce by fermentation a high molecular weight exopolysaccharide (EPS) called GY785. This EPS described as a new source of glycosaminoglycan-like molecule presents a great potential for pharmaceutical and biotechnological applications. However, this unusual EPS is secreted by a Gram-negative bacterium and can be therefore contaminated by endotoxins, in particular the lipopolysaccharides (LPS). Biochemical and chemical analyses of the LPS extracted from A. infernus membranes have shown the lack of the typical LPS architecture since 3-deoxy-D-manno-oct-2-ulopyranosonic acid (Kdo), glucosamine (GlcN), and phosphorylated monosaccharides were not present. Unlike for other Gram-negative bacteria, the results revealed that the outer membrane of A. infernus bacterium is most likely composed of peculiar glycolipids. Furthermore, the presence of these glycolipids was also detected in the EPS batches produced by fermentation. Different purification and chemical detoxification methods were evaluated to efficiently purify the EPS. Only the method based on a differential solubility of EPS and glycolipids in deoxycholate detergent showed the highest decrease in the endotoxin content. In contrast to the other tested methods, this new protocol can provide an effective method for obtaining endotoxin-free EPS without any important modification of its molecular weight, monosaccharide composition, and sulfate content.

摘要

从深海热液喷口分离出的嗜冷杆菌可以通过发酵产生一种高分子量的胞外多糖 (EPS),称为 GY785。这种 EPS 被描述为一种新型糖胺聚糖类似物的来源,具有很大的药用和生物技术应用潜力。然而,这种不寻常的 EPS 是由革兰氏阴性菌分泌的,因此可能会被内毒素污染,特别是脂多糖 (LPS)。从 A. infernus 膜中提取的 LPS 的生化和化学分析表明,由于缺乏典型的 LPS 结构,3-脱氧-D-甘露辛-2-酮酸 (Kdo)、葡萄糖胺 (GlcN) 和磷酸单糖均不存在。与其他革兰氏阴性菌不同,结果表明 A. infernus 菌的外膜很可能由特殊的糖脂组成。此外,在发酵生产的 EPS 批次中也检测到了这些糖脂的存在。评估了不同的纯化和化学解毒方法来有效纯化 EPS。只有基于 EPS 和糖脂在去氧胆酸钠洗涤剂中不同溶解度的方法显示出最低的内毒素含量。与其他测试方法相比,这种新方案可以提供一种有效的方法来获得无内毒素的 EPS,而不会对内毒素的分子量、单糖组成和硫酸根含量进行任何重要的修饰。

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