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癌调蛋白的钙结合和镁结合特性。直接结合研究与微量量热法。

Calcium- and magnesium-binding properties of oncomodulin. Direct binding studies and microcalorimetry.

作者信息

Cox J A, Milos M, MacManus J P

机构信息

Department of Biochemistry, University of Geneva, Switzerland.

出版信息

J Biol Chem. 1990 Apr 25;265(12):6633-7.

PMID:2108959
Abstract

Ca2+ binding to the wild type recombinant oncomodulin was studied by equilibrium flow dialysis in the absence and presence of 1, 2, and 10 mM Mg2+. Direct Mg2(+)-binding experiments were carried out by the Hummel-Dryer gel filtration technique. These studies revealed that in the absence of Mg2+ oncomodulin binds two Ca2+ with KCa = 2.2 x 10(7) and 1.7 x 10(6) M-1, respectively. In the absence of Ca2+ the protein binds only one Mg2+ with KMg = 4.0 x 10(3) M-1.Mg2+ antagonizes Ca2+ binding at the high affinity site according to the rule of direct competition. Ca2+ binding to the low affinity site is only slightly affected by Mg2+, so that in the presence of 2-3 mM Mg2+ the two sites have apparently an equal affinity for Ca2+. Microcalorimetry showed that, in spite of the different affinities of the two Ca2(+)-binding sites, delta H0 for the binding of each Ca2+ is identical and exothermic for -18.9 kJ/site. It follows that the entropy gain upon binding of Ca2+ is +77.1 J K-1 site-1 for the high affinity Ca2(+)-Mg2+ site and +56.0 J K-1 site-1 for the low affinity Ca2(+)-specific site. Mg2+ binding is endothermic for +13 kJ/site with an entropy change of +111 J K-1 site-1. The thermodynamic characteristics of the Ca2(+)-Mg2+ site resemble most those of site II (the so-called EF domain) of toad alpha-parvalbumin. The characteristics of Ca2+ binding to the specific site (likely the CD domain) are different from those of the Ca2+ specific sites in troponin C and in calmodulin and suggest that in oncomodulin hydrophobic forces do not play a predominant role in the binding process at the specific site.

摘要

在不存在和存在1 mM、2 mM和10 mM镁离子的情况下,通过平衡流透析研究了钙离子与野生型重组癌调蛋白的结合。通过胡默尔-德莱尔凝胶过滤技术进行了直接的镁离子结合实验。这些研究表明,在不存在镁离子的情况下,癌调蛋白分别以KCa = 2.2×10⁷和1.7×10⁶ M⁻¹的亲和力结合两个钙离子。在不存在钙离子的情况下,该蛋白仅以KMg = 4.0×10³ M⁻¹的亲和力结合一个镁离子。根据直接竞争规则,镁离子在高亲和力位点拮抗钙离子结合。镁离子对低亲和力位点的钙离子结合影响较小,因此在存在2 - 3 mM镁离子的情况下,两个位点对钙离子的亲和力明显相等。微量量热法表明,尽管两个钙离子结合位点的亲和力不同,但每个钙离子结合的ΔH⁰是相同的,且每个位点放热-18.9 kJ。由此可知,高亲和力钙离子-镁离子位点结合钙离子时的熵增为+77.1 J K⁻¹位点⁻¹,低亲和力钙离子特异性位点为+56.0 J K⁻¹位点⁻¹。镁离子结合是吸热的,每个位点的熵变为+111 J K⁻¹位点⁻¹,热焓为+13 kJ/位点。钙离子-镁离子位点的热力学特征与蟾蜍α-原肌球蛋白的位点II(所谓的EF结构域)最为相似。钙离子与特异性位点(可能是CD结构域)结合的特征不同于肌钙蛋白C和钙调蛋白中的钙离子特异性位点,这表明在癌调蛋白中,疏水作用力在特异性位点的结合过程中不起主要作用。

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