Brandt P W, Cox R N, Kawai M, Robinson T
J Gen Physiol. 1982 Jun;79(6):997-1016. doi: 10.1085/jgp.79.6.997.
Three different ways of shifting the pCa/tension curve on the pCa axis have been studied and related to changes in the rate constants of the cross-bridge cycle. The curve midpoint shifts to higher pCa's when the substrate (Mg-ATP) is reduced from 5 to 0.25 mM, when the phosphate concentration is reduced from 7.5 mM to 0, and when the ionic strength is reduced from 0.200 to 0.120. The Hill coefficients of the pCa/tension curve in our standard saline (5 mM substrate, 5 mM free ATP, 7.5 mM phosphate, ionic strength 0.200, 15 degree C) are between 5.1 and 5.6 and fall to 3.0 with the left shift of the curve brought about by reducing both substrate and phosphate. Left shifts of the curve produced by reduction in the ionic strength do not result ina lower Hill coefficient. Reducing eigher substrate or phosphate is associated with a reduction in the optimal frequency for oscillatory work, but reduction in ionic strength is not so associated. Maximum tension increases with the left shift of the curve brought about by reducing phosphate concentration or ionic strength, but tension decreases with the left shift of the curve accompanying substrate concentration reduction in phosphate-free saline. We argue that one mechanism for the observed shift of the curve along the pCa axis is the relationship between the time a cross-bridge takes to complete a cycle and the time Ca2+ stays bound to troponin C (TnC). If the cycle rate is decreased, a smaller fraction to TnC sites must be occupied to keep a given fraction of cross-bridges active. To illustrate this concept, we present a simplified model of the cross-bridge cycle incorporating the kinetics of Ca binding to TnC.
研究了三种使pCa/张力曲线在pCa轴上移动的不同方式,并将其与横桥循环速率常数的变化联系起来。当底物(Mg-ATP)从5 mM降至0.25 mM时、当磷酸盐浓度从7.5 mM降至0时以及当离子强度从0.200降至0.120时,曲线中点会移向更高的pCa值。在我们的标准盐溶液(5 mM底物、5 mM游离ATP、7.5 mM磷酸盐、离子强度0.200、15℃)中,pCa/张力曲线的希尔系数在5.1至5.6之间,而随着底物和磷酸盐浓度降低导致曲线左移,该系数降至3.0。离子强度降低导致的曲线左移不会使希尔系数降低。降低底物或磷酸盐会使振荡功的最佳频率降低,但降低离子强度则不会如此。最大张力会随着因降低磷酸盐浓度或离子强度导致的曲线左移而增加,但在无磷酸盐盐溶液中,随着底物浓度降低导致曲线左移,张力会降低。我们认为,观察到的曲线沿pCa轴移动的一种机制在于横桥完成一个循环所需的时间与Ca2+与肌钙蛋白C(TnC)结合的时间之间的关系。如果循环速率降低,为保持给定比例的横桥处于活跃状态,必须占据的TnC位点比例就会更小。为说明这一概念,我们提出了一个包含Ca与TnC结合动力学的横桥循环简化模型。