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Effect of extension of the heparin binding pocket on the structure stability and cell proliferation activity of the human acidic fibroblast growth factor

机译:肝素结合口袋的延伸对人酸性成纤维细胞生长因子的结构稳定性和细胞增殖活性的影响

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摘要

Acidic human fibroblast growth factor (hFGF1) plays a key role in cell growth and proliferation. Activation of the cell surface FGF receptor is believed to involve the glycosaminoglycan, heparin. However, the exact role of heparin is a subject of considerable debate. In this context, in this study, the correlation between heparin binding affinity and cell proliferation activity of hFGF1 is examined by extending the heparin binding pocket through selective engineering via charge reversal mutations (D82R, D84R and D82R/D84R). Results of biophysical experiments such as intrinsic tryptophan fluorescence and far UV circular dichroism spectroscopy suggest that the gross native structure of hFGF1 is not significantly perturbed by the engineered mutations. However, results of limited trypsin digestion and ANS binding experiments show that the backbone structure of the D82R variant is more flexible than that of the wild type hFGF1. Results of the temperature and urea-induced equilibrium unfolding experiments suggest that the stability of the charge-reversal mutations increases in the presence of heparin. Isothermal titration calorimetry (ITC) data reveal that the heparin binding affinity is significantly increased when the charge on D82 is reversed but not when the negative charge is reversed at both positions D82 and D84 (D82R/D84R). However, despite the increased affinity of D82R for heparin, the cell proliferation activity of the D82R variant is observed to be reduced compared to the wild type hFGF1. The results of this study clearly demonstrate that heparin binding affinity of hFGF1 is not strongly correlated to its cell proliferation activity.
机译:酸性人成纤维细胞生长因子(hFGF1)在细胞生长和增殖中起关键作用。据信细胞表面FGF受体的活化涉及糖胺聚糖,肝素。然而,肝素的确切作用是一个颇有争议的话题。在这种情况下,在这项研究中,肝素结合亲和力与hFGF1细胞增殖活性之间的相关性是通过通过电荷逆向突变(D82R,D84R和D82R / D84R)的选择性工程扩展肝素结合口袋来检查的。生物物理学实验的结果(例如固有色氨酸荧光和远紫外圆二色光谱)表明,hFGF1的总体天然结构不会受到工程突变的明显干扰。但是,有限的胰蛋白酶消化和ANS结合实验的结果表明,D82R变体的骨架结构比野生型hFGF1更灵活。温度和尿素诱导的平衡展开实验的结果表明,在肝素存在下,电荷反转突变的稳定性增加。等温滴定量热法(ITC)数据显示,当D82上的电荷反转时,肝素结合亲和力显着提高,而在D82和D84的两个负电荷(D82R / D84R)上均负电荷反转时,肝素结合亲和力却没有显着提高。但是,尽管D82R对肝素的亲和力增加,但与野生型hFGF1相比,D82R变体的细胞增殖活性却降低了。这项研究的结果清楚地表明,hFGF1的肝素结合亲和力与其细胞增殖活性没有密切关系。

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