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跨膜信号蛋白聚糖。

Transmembrane signaling proteoglycans.

机构信息

Department of Biomedical Sciences, University of Copenhagen, Copenhagen, 2200 Denmark.

出版信息

Annu Rev Cell Dev Biol. 2010;26:89-114. doi: 10.1146/annurev-cellbio-100109-104126.

Abstract

Virtually all metazoan cells contain at least one and usually several types of transmembrane proteoglycans. These are varied in protein structure and type of polysaccharide, but the total number of vertebrate genes encoding transmembrane proteoglycan core proteins is less than 10. Some core proteins, including those of the syndecans, always possess covalently coupled glycosaminoglycans; others do not. Syndecan has a long evolutionary history, as it is present in invertebrates, but many other transmembrane proteoglycans are vertebrate inventions. The variety of proteins and their glycosaminoglycan chains is matched by diverse functions. However, all assume roles as coreceptors, often working alongside high-affinity growth factor receptors or adhesion receptors such as integrins. Other common themes are an ability to signal through their cytoplasmic domains, often to the actin cytoskeleton, and linkage to PDZ protein networks. Many transmembrane proteoglycans associate on the cell surface with metzincin proteases and can be shed by them. Work with model systems in vivo and in vitro reveals roles in growth, adhesion, migration, and metabolism. Furthermore, a wide range of phenotypes for the core proteins has been obtained in mouse knockout experiments. Here some of the latest developments in the field are examined in hopes of stimulating further interest in this fascinating group of molecules.

摘要

真核生物细胞几乎都含有至少一种,通常是几种类型的跨膜蛋白聚糖。这些蛋白聚糖在结构和多糖类型上有所不同,但编码跨膜蛋白聚糖核心蛋白的脊椎动物基因总数少于 10 个。一些核心蛋白,包括 syndecan,总是具有共价连接的糖胺聚糖;其他则没有。 syndecan 具有悠久的进化历史,因为它存在于无脊椎动物中,但许多其他跨膜蛋白聚糖是脊椎动物的发明。蛋白质及其糖胺聚糖链的多样性与其功能相匹配。然而,所有的跨膜蛋白聚糖都扮演着核心受体的角色,通常与高亲和力的生长因子受体或整合素等粘附受体一起发挥作用。其他常见的主题是通过其细胞质结构域进行信号传递的能力,通常是到肌动蛋白细胞骨架,并与 PDZ 蛋白网络连接。许多跨膜蛋白聚糖在细胞表面与 metzincin 蛋白酶结合,并可被其脱落。体内和体外的模型系统研究揭示了它们在生长、粘附、迁移和代谢中的作用。此外,在小鼠敲除实验中获得了核心蛋白的广泛表型。本文旨在通过探讨该领域的最新进展,激发人们对这组迷人分子的进一步兴趣。

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