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钙离子、钙调蛋白与磷酸化酶激酶相互作用中的自由能偶联

Free energy coupling in the interactions between Ca2+, calmodulin, and phosphorylase kinase.

作者信息

Burger D, Stein E A, Cox J A

出版信息

J Biol Chem. 1983 Dec 10;258(23):14733-9.

PMID:6643507
Abstract

Interactions between Ca2+, exogenous calmodulin, and white skeletal muscle phosphorylase kinase have been quantitatively studied by equilibrium gel filtrations and analyzed by means of the so-called "linked functions" theory (Weber, G. (1975) Adv. Protein Chem. 29, 1-83). Four moles of calmodulin, each saturated with at least 3 Ca2+ ions, bind to 1 mol of phosphorylase kinase with a Kdiss of 2.3 nM. The activation of the enzyme as a function of free [Ca2+] shows that the intrinsic Ca-binding properties of phosphorylase kinase do not change upon binding of exogenous calmodulin, and confirms that alpha beta gamma delta X Ca3 is the functional catalytic unit through which activation occurs. Direct binding studies reveal that the intrinsic Ca-binding properties of the enzyme remain the same in the presence of either 0.5 or 8 mM Mg2+, indicating that phosphorylase kinase is endowed with Ca-specific sites. Upon interaction with the enzyme, calmodulin acquires strong positive cooperativity in Ca2+-binding: whereas its first two stoichiometric Ca-binding constants are not significantly different from those of free calmodulin, the third Ca2+ ion binds with an affinity at least 10(5)-fold higher than the corresponding one in free calmodulin. Calmodulin liganded with 1 or 2 Ca2+ displays the same low affinity for the enzyme as calmodulin depleted of Ca2+ (approximate Kdiss = 10(-4)-10(-3) M). The alpha beta gamma delta X calmodulin X Ca3 complex is strengthened by a free energy coupling of -8 kcal/mol upon complexation. The quantitative analysis of our results predicts that in spite of this high free energy barrier the dissociation of the complex (i.e. the inactivation of phosphorylase kinase) occurs rapidly upon lowering free [Ca2+].

摘要

通过平衡凝胶过滤对钙离子、外源钙调蛋白和白色骨骼肌磷酸化酶激酶之间的相互作用进行了定量研究,并借助所谓的“连锁函数”理论进行分析(Weber, G. (1975) Adv. Protein Chem. 29, 1 - 83)。四摩尔钙调蛋白,每摩尔至少与3个钙离子饱和结合,以2.3 nM的解离常数(Kdiss)与1摩尔磷酸化酶激酶结合。酶的活性作为游离[Ca2+]的函数表明,外源钙调蛋白结合后磷酸化酶激酶的固有钙结合特性不变,并证实αβγδX Ca3是发生激活作用的功能性催化单元。直接结合研究表明,在存在0.5 mM或8 mM镁离子的情况下,该酶的固有钙结合特性保持不变,表明磷酸化酶激酶具有钙特异性位点。与该酶相互作用时,钙调蛋白在钙结合方面获得强正协同性:其前两个化学计量钙结合常数与游离钙调蛋白的相应常数没有显著差异,而第三个钙离子的结合亲和力比游离钙调蛋白中的相应钙离子至少高10^5倍。与1个或2个钙离子结合的钙调蛋白对该酶的亲和力与无钙离子的钙调蛋白相同(近似解离常数Kdiss = 10^(-4) - 10^(-3) M)。αβγδX钙调蛋白X Ca3复合物在形成时通过 - 8千卡/摩尔的自由能耦合得到增强。对我们结果的定量分析预测,尽管存在这种高自由能障碍,但降低游离[Ca2+]时复合物的解离(即磷酸化酶激酶的失活)会迅速发生。

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