da Silva A C, Kendrick-Jones J, Reinach F C
Departamento de Bioquimica, Universidade de São Paulo, Brazil.
J Biol Chem. 1995 Mar 24;270(12):6773-8. doi: 10.1074/jbc.270.12.6773.
Calcium binding proteins mediate a large number of cellular processes. These processes respond to micromolar fluctuations of cytosolic calcium in the presence of a large excess of magnesium. The metal binding sites present in these proteins are either calcium-specific (regulatory sites) or capable of binding both calcium and magnesium (structural sites). Using site-directed mutagenesis we were able to convert the single Ca2+/Mg2+ site present in chicken smooth muscle myosin regulatory light chain (RLC) into a Ca(2+)-specific site. The replacement of the aspartic acid present in the 12th position (-Z coordinating position) of the metal binding loop with a glutamic acid increases calcium affinity and abolishes magnesium binding, rendering the site calcium-specific. To explain this observation, we hypothesize that restrictions on the ability of side chains to change conformation, contributing one (for Mg2+ binding) or two (for Ca2+ binding) coordinations could alter the metal specificity in EF-hands. Other mutations which decrease or abolish calcium binding have also been characterized. When used to substitute the endogenous scallop myosin RLC, these mutants were capable of restoring the Ca2+ regulation to the actin-activated myosin ATPase demonstrating that in these hybrid myosins, the regulatory function of the Ca(2+)-specific site (present on the essential light chain) does not depend on the occupancy of the Ca2+/Mg2+ site (present on the regulatory light chain).
钙结合蛋白介导大量细胞过程。在存在大量过量镁的情况下,这些过程会对胞质钙的微摩尔波动做出反应。这些蛋白质中存在的金属结合位点要么是钙特异性的(调节位点),要么能够结合钙和镁(结构位点)。通过定点诱变,我们能够将鸡平滑肌肌球蛋白调节轻链(RLC)中存在的单个Ca2+/Mg2+位点转化为Ca(2+)特异性位点。用谷氨酸取代金属结合环第12位(-Z配位位置)存在的天冬氨酸,可增加钙亲和力并消除镁结合,使该位点具有钙特异性。为了解释这一观察结果,我们假设侧链构象变化能力的限制,贡献一个(用于Mg2+结合)或两个(用于Ca2+结合)配位,可能会改变EF-手型结构中的金属特异性。其他降低或消除钙结合的突变也已得到表征。当用于替代内源性扇贝肌球蛋白RLC时,这些突变体能够将Ca2+调节恢复到肌动蛋白激活的肌球蛋白ATP酶,表明在这些杂合肌球蛋白中,Ca(2+)特异性位点(存在于必需轻链上)的调节功能不依赖于Ca2+/Mg2+位点(存在于调节轻链上)的占据情况。