Godt R E
Biophys J. 1981 Aug;35(2):385-92. doi: 10.1016/S0006-3495(81)84797-2.
The relative force-pCa relation of skinned frog skeletal muscle fibers is shifted along the pCa axis by changes in pH. This shift has been interpreted as arising from competition between H+ and Ca2+ for a binding site on troponin. Unfortunately, binding studies have been unable to confirm such competition. Alternatively, however, the data fit a model where H+ influences the degree of dissociation of ionizable groups on the surface of the thin filaments, thus altering the electrostatic potential surrounding the filaments. Alterations in the potential will, in turn, change the concentration of Ca2+ near the troponin binding sites in accordance with the Boltzmann relation. A simple model, based upon the Gouy-Chapman relation between surface potential and charge density, provides a quantitative explanation for the shift of the relative force-pCa curve with pH, given a reasonable estimate of the surface charge density on the thin filament. A best fit is obtained when the ionizable groups giving rise to the potential have a log proton ionization constant (pKa) of 6.1, similar to that for the imidazole group on histidine, and when the density of these groups is near that estimated from amino acid analysis of thin filament proteins and from filament geometry. In preliminary experiments, reaction of skinned frog fibers with diethylpyrocarbonate (DEP) at pH 6 shifted the force-pCa curve toward lower Ca2+. This would be expected in the model since DEP at pH 6 is reported to specifically react with histidine imidazole groups and to irreversibly decrease their pKa, which would increase the net negative charge of the filaments.
pH值的变化会使剥制的青蛙骨骼肌纤维的相对力-pCa关系沿pCa轴发生偏移。这种偏移被解释为H⁺和Ca²⁺在肌钙蛋白上的结合位点存在竞争。遗憾的是,结合研究未能证实这种竞争。然而,另一种情况是,数据符合一个模型,即H⁺影响细肌丝表面可电离基团的解离程度,从而改变细肌丝周围的静电势。电势的改变进而会根据玻尔兹曼关系改变肌钙蛋白结合位点附近Ca²⁺的浓度。基于表面电势与电荷密度之间的古依-查普曼关系的一个简单模型,在对细肌丝表面电荷密度进行合理估计的情况下,为相对力-pCa曲线随pH值的偏移提供了定量解释。当产生电势的可电离基团的质子电离常数(pKa)的对数值为6.1(与组氨酸上的咪唑基团类似)且这些基团的密度接近根据细肌丝蛋白的氨基酸分析和肌丝几何结构估计的值时,可得到最佳拟合。在初步实验中,剥制的青蛙纤维在pH值为6时与焦碳酸二乙酯(DEP)反应,使力-pCa曲线向较低的Ca²⁺方向偏移。在该模型中这是可以预期的,因为据报道pH值为6时的DEP会与组氨酸咪唑基团特异性反应并不可逆地降低其pKa,这会增加细肌丝的净负电荷。