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肝素调节生长因子结合的潜在机制。

Potential mechanisms for the regulation of growth factor binding by heparin.

作者信息

Forsten K E, Fannon M, Nugent M A

机构信息

Department of Chemical Engineering, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061-0211, USA.

出版信息

J Theor Biol. 2000 Jul 21;205(2):215-30. doi: 10.1006/jtbi.2000.2064.

Abstract

Heparin and heparan sulfate proteoglycans (HSPG) bind many soluble growth factors and this binding is now recognized as an important mechanism for modulation of cell activity. Fibroblast growth factor-2 (FGF-2) is one of the best characterized of the heparin-binding growth factors and it has been shown experimentally that heparin regulation of FGF-2 activity is dependent on the level of cell HSPG and the concentration of heparin. In this paper, we explore, using mathematical modeling, proposed mechanisms for heparin regulation and determine how they impact FGF receptor binding. We demonstrate that the experimentally observed receptor binding phenomena can be reproduced if cells (1) express heparin-binding cell surface molecules and if either (2) these heparin binding sites are FGFR and bind heparin and FGF-2-heparin complexes or (3) are surface molecules able to bind FGF-2 and couple with FGF-2 receptors to form high-affinity FGF-2-bound surface complexes. The ability of heparin to directly interact with the FGFR and bind FGF-2 in the absence of this coupling function was not sufficient to explain heparin activity. These findings have implications with regard to regulation of heparin-binding growth factors and could help guide the development of highly specific growth regulatory molecules through specific regulation by heparin and HSPG.

摘要

肝素和硫酸乙酰肝素蛋白聚糖(HSPG)能结合多种可溶性生长因子,目前这种结合被认为是调节细胞活性的重要机制。成纤维细胞生长因子-2(FGF-2)是肝素结合生长因子中特征最为明确的因子之一,实验表明,肝素对FGF-2活性的调节取决于细胞HSPG的水平和肝素的浓度。在本文中,我们通过数学建模探索了肝素调节的潜在机制,并确定它们如何影响FGF受体结合。我们证明,如果细胞(1)表达肝素结合细胞表面分子,并且(2)这些肝素结合位点是FGFR并能结合肝素和FGF-2-肝素复合物,或者(3)是能够结合FGF-2并与FGF-2受体偶联以形成高亲和力FGF-2结合表面复合物的表面分子,那么实验观察到的受体结合现象就可以重现。在没有这种偶联功能的情况下,肝素直接与FGFR相互作用并结合FGF-2的能力不足以解释肝素的活性。这些发现对肝素结合生长因子的调节具有启示意义,并有助于通过肝素和HSPG的特异性调节来指导高特异性生长调节分子的开发。

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