首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >Strategy for fluorescent labeling of human acidic fibroblast growth factor without impairment of mitogenic activity: A bona fide tracer
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Strategy for fluorescent labeling of human acidic fibroblast growth factor without impairment of mitogenic activity: A bona fide tracer

机译:荧光标记人酸性成纤维细胞生长因子而不损害有丝分裂原活性的策略:真正的示踪剂

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摘要

Here we describe, for the first time, the design and characterization of a bona fide fluorescently labeled mutant of the human acidic fibroblast growth factor (aFGF). The aFGF-Cys2 mutant was recombinantly synthesized by substituting the second amino acid with a reactive cysteine whose sulfhydryl group's side chain reactivity facilitated the covalent binding of a fluorescent probe as a thiolyte monobromobimane. Using a combination of biophysical and functional assays, we found that the fluorescently labeled mutant aFGF is characterized by essentially the same global folding, mitogenic activity, and association behavior with heparin, its physiological activator, as the unlabeled wild-type protein. We used this new tracer protein mutant to determine the association behavior of aFGF with heparin in the presence of high concentrations of albumin that mimicked more closely the plasma medium in which aFGF is naturally located and in which it has evolved to function. By exposing the aFGF-Cys2-heparin complex to increasing concentrations of albumin up to physiological plasma levels, we were able to demonstrate that macromolecular crowding does not affect the stoichiometry of the interaction. In summary, the dimeric aFGF-Cys2-heparin complex might represent a biologically relevant complex in physiological media.
机译:在这里,我们首次描述了人类酸性成纤维细胞生长因子(aFGF)的真荧光标记的突变体的设计和表征。通过用反应性半胱氨酸取代第二个氨基酸来重组合成aFGF-Cys2突变体,该反应性半胱氨酸的巯基的侧链反应性促进了荧光探针作为硫代单溴二烯的共价结合。使用生物物理和功能测定的组合,我们发现荧光标记的突变体aFGF的特征是与未标记的野生型蛋白具有基本相同的整体折叠,促有丝分裂活性以及与其生理活化剂肝素的缔合行为。我们使用这种新的示踪蛋白突变体来确定aFGF与肝素在高浓度白蛋白存在下的缔合行为,该白蛋白更紧密地模仿了自然存在aFGF并已进化为功能的血浆培养基。通过将aFGF-Cys2-肝素复合物暴露于逐渐增加的白蛋白浓度直至生理血浆水平,我们能够证明大分子拥挤不会影响相互作用的化学计量。总之,二聚体aFGF-Cys2-肝素复合物可能代表生理介质中的生物学相关复合物。

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