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神经粘蛋白和磷酸粘蛋白/蛋白酪氨酸磷酸酶-ζ/β与腱生蛋白-R、双调蛋白及肝素结合生长相关分子的高亲和力结合和重叠定位

High affinity binding and overlapping localization of neurocan and phosphacan/protein-tyrosine phosphatase-zeta/beta with tenascin-R, amphoterin, and the heparin-binding growth-associated molecule.

作者信息

Milev P, Chiba A, Häring M, Rauvala H, Schachner M, Ranscht B, Margolis R K, Margolis R U

机构信息

Department of Pharmacology, New York University Medical Center, New York, New York 10016, USA.

出版信息

J Biol Chem. 1998 Mar 20;273(12):6998-7005. doi: 10.1074/jbc.273.12.6998.

Abstract

We have studied the interactions of the nervous tissue-specific chondroitin sulfate proteoglycans neurocan and phosphacan with the extracellular matrix protein tenascin-R and two heparin-binding proteins, amphoterin and the heparin-binding growth-associated molecule (HB-GAM), using a radioligand binding assay. Both proteoglycans show saturable, high affinity binding to tenascin-R with apparent dissociation constants in the 2-7 nM range. Binding is reversible, inhibited in the presence of unlabeled proteoglycan, and increased by approximately 60% following chondroitinase treatment of the proteoglycans, indicating that the interactions are mediated via the core (glyco)proteins rather than by the glycosaminoglycan chains, which may in fact partially shield the binding sites. In contrast to their interactions with tenascin-C, in which binding was decreased by approximately 75% in the absence of calcium, binding of phosphacan to tenascin-R was not affected by the absence of divalent cations in the binding buffer, although there was a small but significant decrease in the binding of neurocan. Neurocan and phosphacan are also high affinity ligands of amphoterin and HB-GAM (Kd = 0.3-8 nM), two heparin-binding proteins that are developmentally regulated in brain and functionally involved in neurite outgrowth. The chondroitin sulfate chains on neurocan and phosphacan account for at least 80% of their binding to amphoterin and HB-GAM. The presence of amphoterin also produces a 5-fold increase in phosphacan binding to the neural cell adhesion molecule contactin. Immunocytochemical studies showed an overlapping localization of the proteoglycans and their ligands in the embryonic and postnatal brain, retina, and spinal cord. These studies have therefore revealed differences in the interactions of neurocan and phosphacan with the two major members of the tenascin family of extracellular matrix proteins, and also suggest that chondroitin sulfate proteoglycans play an important role in the binding and/or presentation of differentiation factors in the developing central nervous system.

摘要

我们利用放射性配体结合分析法,研究了神经组织特异性硫酸软骨素蛋白聚糖神经黏蛋白和磷黏蛋白与细胞外基质蛋白腱生蛋白-R以及两种肝素结合蛋白(双调蛋白和肝素结合生长相关分子,即HB-GAM)之间的相互作用。两种蛋白聚糖均显示出对腱生蛋白-R的饱和、高亲和力结合,其表观解离常数在2-7 nM范围内。结合是可逆的,在未标记的蛋白聚糖存在下受到抑制,并且在对蛋白聚糖进行软骨素酶处理后增加约60%,这表明相互作用是通过核心(糖)蛋白介导的,而不是通过糖胺聚糖链,实际上糖胺聚糖链可能部分屏蔽了结合位点。与它们与腱生蛋白-C的相互作用相反,在腱生蛋白-C的相互作用中,在无钙的情况下结合减少约75%,而磷黏蛋白与腱生蛋白-R的结合不受结合缓冲液中二价阳离子缺失的影响,尽管神经黏蛋白的结合有小幅但显著的减少。神经黏蛋白和磷黏蛋白也是双调蛋白和HB-GAM的高亲和力配体(Kd = 0.3-8 nM),这两种肝素结合蛋白在脑发育过程中受到调控,并且在神经突生长中发挥功能作用。神经黏蛋白和磷黏蛋白上的硫酸软骨素链至少占它们与双调蛋白和HB-GAM结合的80%。双调蛋白的存在还使磷黏蛋白与神经细胞黏附分子接触蛋白的结合增加了5倍。免疫细胞化学研究表明,蛋白聚糖及其配体在胚胎期和出生后脑、视网膜和脊髓中存在重叠定位。因此,这些研究揭示了神经黏蛋白和磷黏蛋白与细胞外基质蛋白腱生蛋白家族的两个主要成员相互作用的差异,并且还表明硫酸软骨素蛋白聚糖在发育中的中枢神经系统中分化因子的结合和/或呈递中发挥重要作用。

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