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Susceptibility towards intramolecular disulphide-bond formation affects conformational stability and folding of human basic fibroblast growth factor.

机译:分子内二硫键形成的易感性影响构象稳定性和人碱性成纤维细胞生长因子的折叠。

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摘要

The conformational stability and the folding properties of the all-beta-type protein human basic fibroblast growth factor (hFGF-2) were studied by means of fluorescence spectroscopy. The results show that the instability of the biological activity of hFGF-2 is also reflected in a low conformational stability of the molecule. The reversibility of the unfolding and refolding process was established under reducing conditions. Determination of the free-energy of unfolding in the presence of reducing agents revealed that the conformational stability of hFGF-2 (DeltaGH2Oapp congruent with21 kJ. mol-1, 25 degreesC) is low compared with other globular proteins under physiological conditions (20-60 kJ.mol-1). However, the conformational stability of hFGF-2 is particularly low under non-reducing conditions. This instability is attributed to intramolecular disulphide-bond formation, rendering the molecule more susceptible to denaturant-induced unfolding. In addition, denaturant-induced unfolding of hFGF-2 renders the protein more susceptible to irreversible oxidative denaturation. Experimental evidence is provided that the irreversibility of the unfolding and refolding process in the absence of reducing agents is linked to the formation of an intramolecular disulphide bond involving cysteines 96 and 101.
机译:通过荧光光谱法研究了全β型蛋白人类碱性成纤维细胞生长因子(hFGF-2)的构象稳定性和折叠特性。结果表明,hFGF-2的生物学活性的不稳定性还反映在分子的低构象稳定性中。在还原条件下建立了展开和再折叠过程的可逆性。在还原剂存在下解折叠的自由能的测定表明,在生理条件下,hFGF-2(DeltaGH2Oapp与21 kJ。mol-1,25摄氏度)的构象稳定性比其他球蛋白低(20-60) kJ.mol-1)。然而,在非还原条件下,hFGF-2的构象稳定性特别低。这种不稳定性归因于分子内二硫键的形成,使分子更容易受到变性剂诱导的解折叠的影响。此外,变性剂诱导的hFGF-2的解折叠使蛋白质更易于发生不可逆的氧化变性。实验证据表明,在不存在还原剂的情况下展开和重新折叠过程的不可逆性与涉及半胱氨酸96和101的分子内二硫键的形成有关。

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