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粘蛋白型O-糖基化

O-glycosylation of the mucin type.

作者信息

Hanisch F G

机构信息

Institute of Biochemistry, Medical Faculty of the University, Köln, Germany.

出版信息

Biol Chem. 2001 Feb;382(2):143-9. doi: 10.1515/BC.2001.022.

Abstract

While only about ten percent of the databank entries are defined as glycoproteins, it has been estimated recently that more than half of all proteins are glycoproteins. Mucin-type O-glycosylation is a widespread post-translational modification of proteins found in the entire animal kingdom, but also in higher plants. The structural complexity of the chains initiated by O-linked GalNAc exceeds that of N-linked chains by far. The process during which serine and threonine residues of proteins become modified is confined to the cis to trans Golgi compartments. The initiation of this process by peptidyl GalNAc-transferases is ruled by the sequence context of putative O-glycosylation sites, but also by epigenetic regulatory mechanisms, which can be mediated by enzyme competition. The cellular repertoir of glycosyltransferases with their distinct donor sugar and acceptor sugar specificities, their sequential action at highly-ordered surfaces, and their localizations in subcompartments of the Golgi finally determine the cell-specific O-glycosylation profile. Dramatic alterations of the glycosylation machinery are observed in cancer cells, resulting in aberrantly O-glycosylated proteins that expose previously masked peptide motifs and new antigenic targets. The functional aspects of O-linked glycans, which comprise among many others their potential role in sorting and secretion of glycoproteins, their influence on protein conformation, and their multifarious involvement in cell adhesion and immunological processes, appear as complex as their structures.

摘要

虽然数据库条目中只有约10%被定义为糖蛋白,但最近估计所有蛋白质中有一半以上是糖蛋白。粘蛋白型O-糖基化是一种广泛存在的蛋白质翻译后修饰,见于整个动物界,也见于高等植物。由O-连接的N-乙酰半乳糖胺起始的糖链结构复杂性远远超过N-连接糖链。蛋白质的丝氨酸和苏氨酸残基发生修饰的过程局限于顺式到反式高尔基体区室。肽基N-乙酰半乳糖胺转移酶引发这一过程,不仅受假定的O-糖基化位点的序列背景影响,还受表观遗传调控机制影响,后者可由酶竞争介导。具有不同供体糖和受体糖特异性的糖基转移酶的细胞库、它们在高度有序表面的顺序作用以及它们在高尔基体亚区室中的定位最终决定了细胞特异性O-糖基化谱。在癌细胞中观察到糖基化机制的显著改变,导致异常O-糖基化的蛋白质暴露以前被掩盖的肽基序和新的抗原靶点。O-连接聚糖的功能方面,包括它们在糖蛋白分选和分泌中的潜在作用、它们对蛋白质构象的影响以及它们在细胞黏附和免疫过程中的多种参与,与其结构一样复杂。

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