Maughan D W, Molloy J E, Brotto M A, Godt R E
Department of Molecular Physiology and Biophysics, University of Vermont, Burlington 05405, USA.
Biophys J. 1995 Oct;69(4):1484-90. doi: 10.1016/S0006-3495(95)80019-6.
In previous papers we used estimates of the composition of frog muscle and calculations involving the likely fixed charge density in myofibrils to propose bathing solutions for skinned fibers, which best mimic the normal intracellular milieu of intact muscle fibers. We tested predictions of this calculation using measurements of the potential across the boundary of skinned frog muscle fibers bathed in this solution. The average potential was -3.1 mV, close to that predicted from a simple Donnan equilibrium. The contribution of ATP hydrolysis to a diffusion potential was probably small because addition of 1 mM vanadate to the solution decreased the fiber actomyosin ATPase rate (measured by high-performance liquid chromatography) by at least 73% but had little effect on the measured potential. Using these solutions, we obtained force-pCa curves from mechanically skinned fibers at three different temperatures, allowing the solution pH to change with temperature in the same fashion as the intracellular pH of intact fibers varies with temperature. The bath concentration of Ca2+ required for half-maximal activation of isometric force was 1.45 microM (22 degrees C, pH 7.18), 2.58 microM (16 degrees C, pH 7.25), and 3.36 microM (5 degrees C, pH 7.59). The [Ca2+] at the threshold of activation at 16 degrees C was approximately 1 microM, in good agreement with estimates of threshold [Ca2+] in intact frog muscle fibers.
在之前的论文中,我们利用对青蛙肌肉成分的估计以及涉及肌原纤维中可能的固定电荷密度的计算,提出了用于去皮肤纤维的浸泡溶液,这种溶液能最好地模拟完整肌肉纤维的正常细胞内环境。我们通过测量浸泡在这种溶液中的去皮肤青蛙肌肉纤维边界处的电位,来检验该计算的预测结果。平均电位为-3.1 mV,接近从简单的唐南平衡预测的值。ATP水解对扩散电位的贡献可能很小,因为向溶液中添加1 mM钒酸盐会使纤维肌动球蛋白ATP酶速率(通过高效液相色谱法测量)至少降低73%,但对测量的电位影响很小。使用这些溶液,我们在三个不同温度下从机械去皮肤的纤维获得了力-pCa曲线,使溶液pH随温度变化的方式与完整纤维的细胞内pH随温度变化的方式相同。等长力半最大激活所需的Ca2+浴浓度在22℃、pH 7.18时为1.45 microM,在16℃、pH 7.25时为2.58 microM,在5℃、pH 7.59时为3.36 microM。16℃时激活阈值处的[Ca2+]约为1 microM,与完整青蛙肌肉纤维中阈值[Ca2+]的估计值吻合良好。