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山羊α-乳白蛋白的折叠与去折叠动力学

Kinetics of folding and unfolding of goat alpha-lactalbumin.

作者信息

Chedad Allel, Van Dael Herman

机构信息

Interdisciplinary Research Center, K.U.Leuven Campus Kortrijk, Kortrijk, Belgium.

出版信息

Proteins. 2004 Nov 1;57(2):345-56. doi: 10.1002/prot.20212.

Abstract

The equilibrium unfolding and the kinetic folding and unfolding of goat alpha-lactalbumin (GLA) were studied by near- and far-ultraviolet circular dichroism (CD) and by stopped-flow fluorescence spectroscopy. Specifically, the influence of environmental conditions such as pH and Ca2+ binding was examined. Compared to the apo-form, the Ca2+-bound form was found to be strongly stabilized in equilibrium conditions at pH 7.5 and 25 degrees C. The kinetics of the refolding of apo-GLA show a major change of fluorescence intensity during the experimental dead-time, but this unresolved effect is strongly diminished in holo-GLA. In both cases, however, the chevron plots can adequately be fitted to a three-state model. Moreover, double-mix stopped-flow experiments showed that the native state (N) is reached through one major pathway without the occurrence of alternative tracks. In contrast to the homologous bovine alpha-lactalbumin (BLA), the compactness of GLA is strongly influenced by the presence of Ca2+ ions. Unlike the two-state transition observed in guanidine hydrochloride (GdnHCl)-induced equilibrium denaturation experiments at higher pH, an equilibrium intermediate state (I) is involved in denaturation at pH 4.5. In the latter case, analysis of the kinetic data makes clear that the intermediate and the unfolded states (U) show practically no Gibbs free energy difference and that they are in rapid equilibrium with each other. A possible explanation for these variations in stability and in folding characteristics with pH could be the degree of protonation of His107 that directly influences non-native interactions. Variation of environmental conditions and even small differences in sequence, therefore, can result in important effects on thermodynamic and folding parameters.

摘要

通过近紫外和远紫外圆二色性(CD)以及停流荧光光谱法研究了山羊α-乳白蛋白(GLA)的平衡去折叠以及动力学折叠和去折叠过程。具体而言,研究了诸如pH值和Ca2+结合等环境条件的影响。与脱辅基形式相比,发现Ca2+结合形式在pH 7.5和25℃的平衡条件下得到了强烈稳定。脱辅基GLA重折叠的动力学表明,在实验死时间内荧光强度发生了重大变化,但这种未解决的效应在全蛋白GLA中大大减弱。然而,在这两种情况下,V形图都可以很好地拟合到三态模型。此外,双混合停流实验表明,天然态(N)是通过一条主要途径达到的,没有出现替代途径。与同源的牛α-乳白蛋白(BLA)不同,GLA的紧密程度受到Ca2+离子存在的强烈影响。与在较高pH值下盐酸胍(GdnHCl)诱导的平衡变性实验中观察到的两态转变不同,在pH 4.5的变性过程中涉及一个平衡中间态(I)。在后一种情况下,动力学数据分析表明,中间态和未折叠态(U)实际上没有吉布斯自由能差异,并且它们彼此处于快速平衡状态。这些稳定性和折叠特性随pH值变化的一个可能解释是His107的质子化程度直接影响非天然相互作用。因此,环境条件的变化甚至序列中的微小差异都可能对热力学和折叠参数产生重要影响。

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