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人类、兔子和狗眼表黏蛋白的聚糖结构存在物种差异。

Glycan structures of ocular surface mucins in man, rabbit and dog display species differences.

作者信息

Royle Louise, Matthews Elizabeth, Corfield Anthony, Berry Monica, Rudd Pauline M, Dwek Raymond A, Carrington Stephen D

机构信息

Department of Biochemistry, Glycobiology Institute, University of Oxford, South Parks Road, Oxford, OX1 3QU, UK.

出版信息

Glycoconj J. 2008 Nov;25(8):763-73. doi: 10.1007/s10719-008-9136-6. Epub 2008 May 9.

Abstract

The composition of the mucus gel of the tear film reflects the competing needs for transparency, stability, hydration, and protection of the ocular surface. Mucins form the macromolecular scaffolding of this hydrated gel, and glycans decorating these glycoproteins represent a rich source of binding ligands that may both modulate microbial binding and regulate the physicochemical characteristics of the gel. This study compares the structure of O-linked glycans derived from the ocular mucins of three species, to determine whether the ocular surface microenvironment dictates the need for a common pattern of O-linked carbohydrate structures. Ocular mucus aspirates were collected from healthy humans, rabbits and dogs. Mucins were purified using standard protocols. O-glycans were released by hydrazinoloysis and subsequently analysed by a combination of HPLC, exoglycosidase digestions and LC-MS/MS. A total of 12 different O-glycans were identified. In human ocular mucin, the majority were negatively charged and terminated in sialic acid, whilst those from rabbit or dog were mainly neutral and terminated in alpha 1-2 fucose and/or alpha 1-3 N-acetylgalactosamine. The glycans were short: the most common structures being tetra-, tri- or disaccharides. Less elaborate glycan structures are encountered at the ocular surface than at many other mucosal surfaces. Species-specific glycan expression is a feature of ocular surface mucins, and has implications for their defensive properties where different microbial and environmental challenges are encountered.

摘要

泪膜黏液凝胶的组成反映了眼表对透明度、稳定性、水合作用及保护的相互竞争需求。黏蛋白构成了这种水合凝胶的大分子支架,修饰这些糖蛋白的聚糖是丰富的结合配体来源,既可以调节微生物的结合,又能调控凝胶的物理化学特性。本研究比较了三种物种眼黏蛋白衍生的O-连接聚糖的结构,以确定眼表微环境是否决定了对O-连接碳水化合物结构共同模式的需求。从健康人类、兔子和狗身上收集眼黏液抽吸物。使用标准方案纯化黏蛋白。通过肼解释放O-聚糖,随后通过高效液相色谱、外切糖苷酶消化和液相色谱-串联质谱联用进行分析。总共鉴定出12种不同的O-聚糖。在人眼黏蛋白中,大多数带负电荷并以唾液酸结尾,而来自兔子或狗的O-聚糖主要是中性的,以α1-2岩藻糖和/或α1-3N-乙酰半乳糖胺结尾。这些聚糖很短:最常见的结构是四糖、三糖或二糖。与许多其他黏膜表面相比,眼表遇到的聚糖结构不太复杂。物种特异性聚糖表达是眼表黏蛋白的一个特征,并且在遇到不同的微生物和环境挑战时对其防御特性有影响。

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