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黏蛋白的复杂性。

The complexity of mucins.

作者信息

Roussel P, Lamblin G, Lhermitte M, Houdret N, Lafitte J J, Perini J M, Klein A, Scharfman A

机构信息

INSERM U16, Lille, France.

出版信息

Biochimie. 1988 Nov;70(11):1471-82. doi: 10.1016/0300-9084(88)90284-2.

Abstract

Mucins represent the main components of gel-like secretions, or mucus, secreted by mucosae or some exocrine glands. These high-molecular-weight glycoproteins are characterized by the large number of carbohydrate chains O-glycosidically linked to the peptide. The determination of mucin molecular weight and conformation has been controversial for several reasons: 1) the methods used to solubilize mucus and to purify mucins are different and 2) the molecules have a strong tendency to aggregate or to bind to other molecules (peptides or lipids). Recently, electron microscopy has shown the filamentous shape of most mucins and their polydisperse character which, in some secretions, might correspond to a polymorphism of the peptide part of these molecules. The recent development of high pressure liquid chromatography and high-resolution proton NMR spectroscopy has allowed major progress in the structural study of mucin carbohydrate chains. These chains may have from 1 to about 20 sugars and bear different antigenic determinants, such as A, B, H, I, i, X, Y or Cad antigens. In some mucins, such as human respiratory mucins, the carbohydrate chain diversity is remarkable, which raises many questions. Mucins are molecules located at the interface between mucosae and the external environment. The carbohydrate chain diversity might allow many interactions between mucins and microorganisms and play a major role in the colonization or the defense of mucosae.

摘要

黏蛋白是黏膜或某些外分泌腺分泌的凝胶状分泌物即黏液的主要成分。这些高分子量糖蛋白的特征是有大量通过O-糖苷键与肽相连的碳水化合物链。由于以下几个原因,黏蛋白分子量和构象的测定一直存在争议:1)用于溶解黏液和纯化黏蛋白的方法不同;2)这些分子有强烈的聚集倾向或与其他分子(肽或脂质)结合的倾向。最近,电子显微镜显示了大多数黏蛋白的丝状形状及其多分散特性,在某些分泌物中,这可能对应于这些分子肽部分的多态性。高压液相色谱和高分辨率质子核磁共振光谱的最新发展使得黏蛋白碳水化合物链的结构研究取得了重大进展。这些链可能含有1至约20个糖,并带有不同的抗原决定簇,如A、B、H、I、i、X、Y或Cad抗原。在某些黏蛋白中,如人呼吸道黏蛋白,碳水化合物链的多样性非常显著,这引发了许多问题。黏蛋白是位于黏膜与外部环境界面的分子。碳水化合物链的多样性可能使黏蛋白与微生物之间发生多种相互作用,并在黏膜的定植或防御中发挥主要作用。

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