Herskovits T T, Hamilton M G
Department of Chemistry, Fordham University, Bronx, New York 10458.
Arch Biochem Biophys. 1987 Nov 1;258(2):607-14. doi: 10.1016/0003-9861(87)90383-3.
The stabilizing effects of Ca2+ and Mg2+ ions on the decameric structure of hemocyanins from two representative chitons, Stenoplax conspicua and Mopalia muscosa were investigated by light-scattering molecular weight measurements, ultracentrifugation, absorbance, and circular dichroism methods. The dissociation profiles at any given pH resulting from the decrease in divalent ion concentration, investigated at a fixed protein concentration of 0.1 g.liter-1, could be fitted by a decamer-to-dimer-to monomer scheme of subunit dissociation. The initial decline in the light-scattering molecular weight curves required one or two apparent binding sites per hemocyanin dimer formed as intermediate dissociation product, with apparent dissociation constants (kD,2) for Ca2+ ions of 0.7 to 7 X 10(-4) M, not very different from the value of 2.5 X 10(-4) M obtained by Makino by equilibrium dialysis for the hemocyanin of the opistobranch, Dolabella auricularia. The binding of Mg2+ ion to S. conspicua and M. muscosa hemocyanins appears to be both weaker than the binding of Ca2+ and more pH dependent, with kD,2 values ranging from the 3 X 10(-4) to 4 X 10(-2) M at pH 8.5 to 9.5. The dissociation the decameric hemocyanin species (sedimentation coefficient ca. 60 S) is also observed in the ultracentrifugation with the initial appearance of 18-20 S dimers, followed by a shift in equilibrium to monomeric species of lower sedimentation rates of 11-12 S as the divalent ion concentration is reduced below 1 X 10(-4) M Ca2+ and Mg2+. The dissociation of dimers to monomers in the second step of the reaction is characterized by one or two binding sites per subunit and a somewhat stronger affinity for divalent ions, indicated by apparent dissociation constants (kD,1) of 0.7 X 10(-4) to 3 X 10(-3) M. Circular dichroism and absorbance measurements at 222 and 346 nm suggest no significant changes in the conformation of the hemocyanin subunits produced by the different stages of subunit dissociation.
通过光散射分子量测量、超速离心、吸光度和圆二色性方法,研究了Ca2+和Mg2+离子对两种代表性石鳖(Stenoplax conspicua和Mopalia muscosa)血蓝蛋白十聚体结构的稳定作用。在固定蛋白质浓度为0.1 g·L-1的条件下,研究了二价离子浓度降低导致的在任何给定pH下的解离曲线,这些曲线可以用亚基解离的十聚体-二聚体-单体模式来拟合。光散射分子量曲线的初始下降要求每个作为中间解离产物形成的血蓝蛋白二聚体有一个或两个表观结合位点,Ca2+离子的表观解离常数(kD,2)为0.7至7×10(-4) M,与牧野通过平衡透析法得到的后鳃亚纲动物Dolabella auricularia血蓝蛋白的2.5×10(-4) M的值相差不大。Mg2+离子与Stenoplax conspicua和Mopalia muscosa血蓝蛋白的结合似乎比Ca2+离子的结合弱,且更依赖于pH值,在pH 8.5至9.5时,kD,2值范围为3×10(-4)至4×10(-2) M。在超速离心中也观察到十聚体血蓝蛋白物种(沉降系数约为60 S)的解离,最初出现18 - 20 S的二聚体,随后随着二价离子浓度降低至低于1×10(-4) M的Ca2+和Mg2+,平衡向沉降速率较低的11 - 12 S的单体物种转移。反应第二步中二聚体向单体的解离特征是每个亚基有一个或两个结合位点,对二价离子的亲和力稍强,表观解离常数(kD,1)为0.7×10(-4)至3×10(-3) M。在222和346 nm处的圆二色性和吸光度测量表明,亚基解离不同阶段产生的血蓝蛋白亚基构象没有显著变化。