Prigodich R V, O'Connor T, Coleman J E
Biochemistry. 1985 Oct 22;24(22):6291-8. doi: 10.1021/bi00343a038.
The 1H (500-MHz), 113Cd (44-MHz), and 31P (81-MHz) NMR spectra of the bovine gamma-carboxyglutamate- (Gla-) containing protein osteocalcin and its Ca(II) and Cd(II) complexes in solution have been obtained. The 1H NMR spectrum of the native protein shows narrow resonances and a highly resolved multiplet structure suggesting rotational freedom of the side chains. In comparison to the simulated 1H NMR spectrum of a random polypeptide chain of the same amino acid composition, there is moderate chemical shift dispersion, indicating some conformational restraints to be present. Ca(II) binding broadens all 1H resonances, so severely at four Ca(II) ions per molecule that few structural conclusions can be made. Cd(II) substituted for Ca(II) has the same effect, and 113Cd NMR shows the Cd(II) to be in intermediate chemical exchange on the chemical shift time scale. Estimates of the chemical exchange rates required for 1H and 113Cd line broadening suggest a range of Kd values for the metal ion complexes from 10(-6) M to as high as 10(-3) M depending on the number of metal ions bound. Alternatively, 1H line broadening could be explained by relatively slow conformational fluxes in the protein induced by labile metal ion binding to one or more sites. Cd(II) when used to form a cadmium-phosphate mineral analogous to hydroxylapatite results in a crystal lattice that removes osteocalcin from solution just as effectively as hydroxylapatite. 113Cd(II) exchange at the binding sites of osteocalcin in solution is slowed dramatically by the addition of HPO4(2-). 31P NMR shows the interaction of phosphate with the protein to require the metal ion.(ABSTRACT TRUNCATED AT 250 WORDS)
已获得溶液中牛含γ-羧基谷氨酸(Gla)的蛋白质骨钙素及其钙(II)和镉(II)配合物的1H(500兆赫兹)、113Cd(44兆赫兹)和31P(81兆赫兹)核磁共振谱。天然蛋白质的1H核磁共振谱显示出窄共振峰和高度分辨的多重峰结构,表明侧链具有旋转自由度。与相同氨基酸组成的无规多肽链的模拟1H核磁共振谱相比,存在适度的化学位移分散,表明存在一些构象限制。钙(II)结合使所有1H共振峰变宽,在每个分子有四个钙(II)离子时变宽严重,以至于几乎无法得出结构结论。用镉(II)替代钙(II)有相同效果,113Cd核磁共振显示镉(II)在化学位移时间尺度上处于中间化学交换状态。1H和113Cd谱线展宽所需化学交换速率的估计表明,金属离子配合物的解离常数(Kd)值范围为10^(-6) M至高达10^(-3) M,这取决于结合的金属离子数量。或者,1H谱线展宽可以用不稳定金属离子与一个或多个位点结合诱导的蛋白质中相对缓慢的构象通量来解释。当镉(II)用于形成类似于羟基磷灰石的镉磷酸盐矿物时,会形成一个晶格,该晶格能像羟基磷灰石一样有效地从溶液中去除骨钙素。通过添加HPO4^(2-),溶液中骨钙素结合位点处的113Cd(II)交换显著减慢。31P核磁共振显示磷酸盐与蛋白质的相互作用需要金属离子。(摘要截短于250字)