McDonald J R, Walsh M P, McCubbin W D, Oikawa K, Kay C M
Biochem J. 1985 Dec 1;232(2):569-75. doi: 10.1042/bj2320569.
The physicochemical properties of a novel Mr-21 000 Ca2+-binding protein isolated from bovine brain were investigated. The protein exhibited a partial specific volume of 0.724 ml/g, a degree of hydration of 0.47 g of water/g of protein and a mean residue weight of 119. Sedimentation equilibrium analysis revealed Mr = 22 600 in the absence of Ca2+; Ca2+ binding appeared to induce dimerization of the molecule. Size-exclusion chromatography indicated a compacting of the molecule on binding of Ca2+: the Stokes radius decreased from 2.75 nm in the absence of Ca2+ to 2.56 nm in its presence. Far-u.v.c.d. spectroscopy showed the apoprotein to be composed of 44% alpha-helix, 18% beta-pleated sheet and 38% random coil. Addition of either KCl (0.1 M) plus Mg2+ (1 mM), or Ca2+ (2 mM), changed the conformation to 49% alpha-helix, 18% beta-pleated sheet and 33% random coil. Near-u.v.c.d. and u.v. difference spectroscopy both indicated perturbations in the environments of all three types of aromatic amino acids on binding of Ca2+. Ca2+ binding also resulted in a 30% enhancement in the tryptophan fluorescence emission intensity. Ca2+ titration of the far-u.v.c.d. and fluorescence enhancement provided KD values of 9.91 microM and 4.68 microM respectively. Finally, the protein was shown to bind Zn2+ with KD = 1.44 microM (no Mg2+) and 1.82 microM (+ Mg2+). These observations strongly support the possibility that this novel Ca2+-binding protein resembles calmodulin and related Ca2+-binding proteins and undergoes a conformational change on binding of Ca2+ which reflects a physiological role in Ca2+-mediated regulation of brain function.
对从牛脑中分离出的一种新型分子量为21000的钙离子结合蛋白的理化性质进行了研究。该蛋白的比容为0.724 ml/g,水合度为0.47 g水/g蛋白,平均残基分子量为119。沉降平衡分析表明,在无钙离子时分子量为22600;钙离子结合似乎诱导了分子二聚化。尺寸排阻色谱表明,钙离子结合时分子发生了压缩:斯托克斯半径从无钙离子时的2.75 nm降至有钙离子时的2.56 nm。远紫外圆二色光谱显示,脱辅基蛋白由44%的α-螺旋、18%的β-折叠片层和38%的无规卷曲组成。加入0.1 M KCl加1 mM Mg2+或2 mM Ca2+后,构象变为49%的α-螺旋、18%的β-折叠片层和33%的无规卷曲。近紫外圆二色光谱和紫外差示光谱均表明,钙离子结合时所有三种类型芳香族氨基酸的环境都受到了扰动。钙离子结合还导致色氨酸荧光发射强度增强30%。对远紫外圆二色光谱和荧光增强进行钙离子滴定,得到的解离常数分别为9.91 μM和4.68 μM。最后,该蛋白显示出与锌离子结合,解离常数为1.44 μM(无镁离子)和1.82 μM(有镁离子)。这些观察结果有力地支持了这种新型钙离子结合蛋白类似于钙调蛋白和相关钙离子结合蛋白,并在结合钙离子时发生构象变化,这反映了其在钙离子介导的脑功能调节中的生理作用的可能性。