首页> 外文期刊>Proteins: Structure, Function, and Genetics >Analysis of Ca2+/Mg2+ selectivity in alpha-lactalbumin and Ca(2+)-binding lysozyme reveals a distinct Mg(2+)-specific site in lysozyme.
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Analysis of Ca2+/Mg2+ selectivity in alpha-lactalbumin and Ca(2+)-binding lysozyme reveals a distinct Mg(2+)-specific site in lysozyme.

机译:在α-乳白蛋白和Ca(2+)结合溶菌酶中Ca2 + / Mg2 +选择性的分析揭示了溶菌酶中一个独特的Mg(2+)特异性位点。

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The triggering of Ca(2+) signaling pathways relies on Ca(2+)/Mg(2+) specificity of proteins mediating these pathways. Two homologous milk Ca(2+)-binding proteins, bovine alpha-lactalbumin (bLA) and equine lysozyme (EQL), were analyzed using the simplest "four-state" scheme of metal- and temperature-induced structural changes in a protein. The association of Ca(2+)/Mg(2+) by native proteins is entropy-driven. Both proteins exhibit strong temperature dependences of apparent affinities to Ca(2+) and Mg(2+), due to low thermal stabilities of their apo-forms and relatively high unfavorable enthalpies of Mg(2+) association. The ratios of their apparent affinities to Ca(2+) and Mg(2+), being unusually high at low temperatures (5.3-6.5 orders of magnitude), reach the values inherent to classical EF-hand motifs at physiological temperatures. The comparison of phase diagrams predicted within the model of competitive Ca(2+) and Mg(2+) binding with experimental data strongly suggests that the association of Ca(2+) and Mg(2+) ions with bLA is a competitive process, whereas the primary Mg(2+) site of EQL is different from its Ca(2+)-binding site. The later conclusion is corroborated by qualitatively different molar ellipticity changes in near-UV region accompanying Mg(2+) and Ca(2+) association. The Ca(2+)/Mg(2+) selectivity of Mg(2+)-site of EQL is below an order of magnitude. EQL exhibits a distinct Mg(2+)-specific site, probably arising as an adaptation to the extracellular environment.
机译:Ca(2+)信号通路的触发依赖于介导这些通路的蛋白质的Ca(2 +)/ Mg(2+)特异性。使用最简单的金属和温度诱导的蛋白质结构变化的“四态”方案,分析了两个同源的牛奶Ca(2+)结合蛋白,牛α-乳白蛋白(bLA)和马溶菌酶(EQL)。 Ca(2 +)/ Mg(2+)的天然蛋白质的关联是熵驱动的。两种蛋白质都表现出对Ca(2+)和Mg(2+)的表观亲和力的强温度依赖性,这是由于它们的脱辅基形式的热稳定性低和Mg(2+)缔合的相对较高的焓所致。它们与Ca(2+)和Mg(2+)的表观亲和力之比在低温下(5.3-6.5个数量级)异常高,在生理温度下达到经典EF手形图案固有的值。比较竞争性Ca(2+)和Mg(2+)结合模型中预测的相图与实验数据,强烈表明Ca(2+)和Mg(2+)离子与bLA的缔合是一个竞争过程,而EQL的主要Mg(2+)位点与其Ca(2+)结合位点不同。后面的结论通过伴随Mg(2+)和Ca(2+)缔合的近紫外区域在质量上不同的摩尔椭圆率变化得到了证实。 EQL的Mg(2 +)-位的Ca(2 +)/ Mg(2+)选择性低于一个数量级。 EQL表现出一个独特的Mg(2+)特定位点,可能是由于对细胞外环境的适应。

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