Brandt P W, Cox R N, Kawai M
Proc Natl Acad Sci U S A. 1980 Aug;77(8):4717-20. doi: 10.1073/pnas.77.8.4717.
The relationship between tension and Ca2+ concentration in single skinned muscle fibers has been determined with a high density of experimental points and the data have been fitted by a least squares method to the Hill equation. We find that the mean Hill coefficient for the slope of the tension/Ca2+ relationship is between 5 and 6, and the pKd is about 5.9. Because there are four Ca2+ binding sites on troponin C, and only two of these regulate hydrolysis of MgATP, we conclude that the regulation of tension by Ca2+ binding is greatly modified by other factors. One important factor is the time required for a cross-bridge to complete a cycle once initiated, relative to the time Ca2+ remains bound to troponin C. The pCa/tension relationship will shift to higher pCa values as the ratio of cross-bridge cycle time to the Ca2+ bound time increases. For example, the pCa/tension curve may progressively shift to the left with increase in tension because strain in the myofilament lattice progressively increases the cycle time. This left shift will produce a pCa/tension relationship that is steeper than the actual Ca2+ binding curve. The anticipated shift of the pCa/tension curve with cycle time also bears on interpretations of earlier experiments on the "active state" and on the effects of Ca2+ on the maximal velocity of shortening.
已通过高密度实验点确定了单根去膜肌纤维中张力与Ca2+浓度之间的关系,并采用最小二乘法将数据拟合到希尔方程。我们发现,张力/Ca2+关系斜率的平均希尔系数在5到6之间,pKd约为5.9。由于肌钙蛋白C上有四个Ca2+结合位点,其中只有两个调节MgATP的水解,因此我们得出结论,Ca2+结合对张力的调节受到其他因素的极大影响。一个重要因素是,相对于Ca2+与肌钙蛋白C结合的时间,横桥一旦启动完成一个循环所需的时间。随着横桥循环时间与Ca2+结合时间的比值增加,pCa/张力关系将向更高的pCa值移动。例如,随着张力增加,pCa/张力曲线可能会逐渐向左移动,因为肌丝晶格中的应变会逐渐增加循环时间。这种左移将产生比实际Ca2+结合曲线更陡的pCa/张力关系。pCa/张力曲线随循环时间的预期移动也与早期关于“活性状态”的实验以及Ca2+对最大缩短速度的影响的解释有关。