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血小板反应蛋白-1与内皮细胞硫酸乙酰肝素的相互作用。硫酸乙酰肝素的结构要求。

Interaction of thrombospondin-1 and heparan sulfate from endothelial cells. Structural requirements of heparan sulfate.

作者信息

Feitsma K, Hausser H, Robenek H, Kresse H, Vischer P

机构信息

Institute for Arteriosclerosis Research, University of Münster, D-48149 Münster, Germany.

出版信息

J Biol Chem. 2000 Mar 31;275(13):9396-402. doi: 10.1074/jbc.275.13.9396.

Abstract

Cell surface-associated heparan sulfate proteoglycans, predominantly perlecan, are involved in the process of binding and endocytosis of thrombospondin-1 (TSP-1) by vascular endothelial cells. To investigate the structural properties of heparan sulfate (HS) side chains that mediate this interaction, the proteoglycans were isolated from porcine endothelial cells and HS chains obtained thereof by beta-elimination. To characterize the structural composition of the HS chains and to identify the TSP-1-binding sequences, HS was disintegrated by specific chemical and enzymatic treatments. Cell layer-derived HS chains revealed the typical structural heterogeneity with domains of non-contiguously arranged highly sulfated disaccharides separated by extended sequences containing predominantly N-acetylated sequences of low sulfation. Affinity chromatography on immobilized TSP-1 demonstrated that nearly all intact HS chains possessed binding affinity, whereas after heparinase III treatment only a small proportion of oligosaccharides were bound with similar affinity to the column. Size fractioning of the bound and unbound oligosaccharides revealed that only a specific portion of deca- to tetradecasaccharides possessed TSP-1-binding affinity. The binding fraction contained over 40% di- and trisulfated disaccharide units and was enriched in the content of the trisulfated 2-O-sulfated L-iduronic acid-N-sulfated-6-O-sulfated glucosamine disaccharide unit. Comparison with the disaccharide composition of the intact HS chains and competition experiments with modified heparin species indicated the specific importance of N- and 6-O-sulfated glucosamine residues for binding. Further depolymerization of the binding oligosaccharides revealed that the glucosamine residues within the TSP-1-binding sequences are not continuously N-sulfated. The present findings implicate specific structural properties for the HS domain involved in TSP-1 binding and indicate that they are distinct from the binding sequence described for basic fibroblast growth factor, another HS ligand and a potential antagonist of TSP-1.

摘要

细胞表面相关的硫酸乙酰肝素蛋白聚糖,主要是基底膜聚糖,参与血管内皮细胞对血小板反应蛋白-1(TSP-1)的结合和内吞过程。为了研究介导这种相互作用的硫酸乙酰肝素(HS)侧链的结构特性,从猪内皮细胞中分离出蛋白聚糖,并通过β-消除法从中获得HS链。为了表征HS链的结构组成并鉴定TSP-1结合序列,通过特定的化学和酶处理使HS降解。细胞层来源的HS链显示出典型的结构异质性,其高度硫酸化二糖的非连续排列结构域被主要包含低硫酸化N-乙酰化序列的延伸序列隔开。固定化TSP-1上的亲和层析表明,几乎所有完整的HS链都具有结合亲和力,而在肝素酶III处理后,只有一小部分寡糖以相似的亲和力与柱结合。对结合和未结合寡糖的大小分级显示,只有特定部分的十糖到十四糖具有TSP-1结合亲和力。结合部分含有超过40%的二硫酸化和三硫酸化二糖单元,并且富含三硫酸化的2-O-硫酸化L-艾杜糖醛酸-N-硫酸化-6-O-硫酸化葡糖胺二糖单元。与完整HS链的二糖组成比较以及与修饰肝素种类的竞争实验表明,N-硫酸化和6-O-硫酸化葡糖胺残基对于结合具有特定重要性。结合寡糖的进一步解聚表明,TSP-1结合序列内的葡糖胺残基并非连续N-硫酸化。目前的研究结果表明参与TSP-1结合的HS结构域具有特定的结构特性,并表明它们与碱性成纤维细胞生长因子(另一种HS配体和TSP-1的潜在拮抗剂)所描述的结合序列不同。

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