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钙和镁离子与小清蛋白结合的热力学分析

A thermodynamic analysis of the binding of calcium and magnesium ions to parvalbumin.

作者信息

Moeschler H J, Schaer J J, Cox J A

出版信息

Eur J Biochem. 1980 Oct;111(1):73-8. doi: 10.1111/j.1432-1033.1980.tb06076.x.

Abstract

Microcalorimetry and equilibrium dialysis were used to determine the thermodynamic functions delta H0, delta G0 and delta S0 guiding the interaction of Ca2+ and Mg2+ with purified carp muscle isoparvalbumin of pI 4.25. The equilibrium dialysis studies indicate equal affinities of the two metal sites of parvalbumin for either Ca2+ or Mg2+ with equilibrium constants of KCa = 2.7 X 10(9) M-1, and KMg = 9.5 X 10(4) M-1. Binding of the two metal ions is fully competitive with no indication for cooperative effects. The apparent Ca2+ affinity constant K'Ca in the presence of 1 mM Mg2+ is 2.8 X 10(7) M-1, and the Mg2+-Ca2+ exchange equilibrium constant equals 2.8 X 10(4) M-1. Microcalorimetry shows that parvalbumin exhibits negative reaction enthalpies of -37.2 kJ/mol metal site for Ca2+ binding and -25.1 kJ/mol site for Mg2+-Ca2+ exchange, yielding delta H0 = -12.1 kJ/mol site for Mg2+ complex formation. Enthalpy changes are linearly dependent upon the amount of metal bound to the protein, thus corroborating the equal affinities of the two sites. Reaction entropies delta S0 are +55.2 J x mol-1 x K-1 for Ca2+ complex formation and +54.8 x mol-1 x K-1 for Mg2+ complex formation. Thus the respective metal binding processes are driven by both enthalpy and entropy conbinations, and are reminiscent of Ca2+ binding to troponin C. The reaction entropy observed during Mg2+-Ca2+ exchange (0.4 J x mol-1 x k-1) is negligible in spite of the markedly different hydration entropies for Ca2+ and Mg2+. This indicates that the two metal complexes of parvalbumin do not have the same conformation entropy. Since no variation in the intrinsic protein fluorescence was observed upon metal exchange, the conformation differences must be restricted to the immediate environment of the metal binding sites.

摘要

微量量热法和平衡透析法被用于测定指导Ca2+和Mg2+与纯化的鲤鱼肌肉等鱼精蛋白(pI 4.25)相互作用的热力学函数ΔH0、ΔG0和ΔS0。平衡透析研究表明,鱼精蛋白的两个金属位点对Ca2+或Mg2+具有相同的亲和力,平衡常数分别为KCa = 2.7×109 M-1和KMg = 9.5×104 M-1。两种金属离子的结合完全竞争,没有协同效应的迹象。在1 mM Mg2+存在下,表观Ca2+亲和常数K'Ca为2.8×107 M-1,Mg2+-Ca2+交换平衡常数为2.8×104 M-1。微量量热法表明,鱼精蛋白对Ca2+结合的反应焓为-37.2 kJ/mol金属位点,对Mg2+-Ca2+交换的反应焓为-25.1 kJ/mol位点,形成Mg2+配合物的ΔH0 = -12.1 kJ/mol位点。焓变与结合到蛋白质上的金属量呈线性相关,从而证实了两个位点的亲和力相同。Ca2+配合物形成的反应熵ΔS0为+55.2 J·mol-1·K-1,Mg2+配合物形成的反应熵为+54.8 J·mol-1·K-1。因此,各自的金属结合过程由焓和熵的组合驱动,这与Ca2+与肌钙蛋白C的结合类似。尽管Ca2+和Mg2+的水化熵明显不同,但Mg2+-Ca2+交换过程中观察到的反应熵(0.4 J·mol-1·K-1)可以忽略不计。这表明鱼精蛋白的两种金属配合物没有相同的构象熵。由于在金属交换过程中未观察到内在蛋白质荧光的变化,构象差异必须局限于金属结合位点的直接环境。

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