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外部钙浓度和pH值对青蛙骨骼肌电荷移动的影响。

Effects of external calcium concentration and pH on charge movement in frog skeletal muscle.

作者信息

Shlevin H H

出版信息

J Physiol. 1979 Mar;288:129-58.

Abstract
  1. The effects of both external Ca2+ (1.8, 25, 50 and 100 mM) and external pH (pH 5.5, 7.15, and 9.0) on the voltage-dependence of charge movement in frog skeletal muscle were examined using the three intracellular micro-electrode voltage-clamp technique. 2. The two-state model of Schneider & Chandler (1973) was used to describe the voltage distribution of membrane charge. The parameters of this model are: Qmax, the maximum quantity of charge; V, the potential of equal distribution of charge; and k, a constant relating to the steepness of the charge vs. voltage relationship. 3. In 1.8 mM external Ca2+, alterations, in external pH shifted the transition potential, V, from a mean +/- S.E. of mean of -36.5 +/- 0.9 mV at pH 7.15 to -25.8 +/- 1.3 mV at pH 5.5 and to -42.5 +/- 1.8 mV at pH 9.0. These shifts are consistent with surface charge theory. No significant changes in Qmax or k were observed over the range of pH 5.5--9.0. 4. A reasonable fit of surface charge theory to the shifts in V over the range pH 5.5--9.0 could be obtained with surface charge densities and binding constants: sigma 1 = -1 e/165 A2, pK1 = 3.9 and sigma 2 = -1 e/400 A2, pK2 = 8. 5. However, at pH 7.15, both V and k changed with increasing external Ca2+ concentration. V shifted from -34.9 +/- 3.7 mV in 1.8 mM-Ca2+ to -13.8 +/- 5.1 mV, -19.3 +/- 3.6 mV and 3.3 +/- 9.3 mV in 25, 50 and 100 mM-Ca2+ respectively. k increased from 8.3 +/- 0.6 mV in 1.8 mM-Ca2+ to 15.3 +/- 1.4 mV, 14.6 +/- 1.6 mV and 20.0 +/- 2.9 mV in 25, 50 and 100 mM-Ca2+. Changes in k reflect decreases in the apparent charged particle valence from approximately 3 in 1.8 mM-Ca2+ to approximately 1.2 in 100 mM-Ca2+. As the external Ca2+ concentration was raised, Qmax was at least as large as that measured in 1.8 mM-Ca2+. The 43% decrease in the apparent valence of the charged groups cannot be explained by simple surface charge theory and may reflect a specific interaction between external Ca2+ and the charged groups. 6. Shifts in V with alterations in external pH and Ca2+ concentration are consistent with the effects of these agents on the contraction threshold of muscle fibres. This observation lends further support to the hypothesis that the charge movement is involved in gating muscle contraction and that the charged particles respond to changes in the electric field across the muscle cell membrane. 7. No difference was observed in the charge movement parameters of fibres from both room-temperature and cold-adapted frog tested at 2--5 degrees C in 1.8 mM-Ca2+ at pH 7.15.
摘要
  1. 采用三细胞内微电极电压钳技术,研究了细胞外Ca2+(1.8、25、50和100 mM)及细胞外pH(pH 5.5、7.15和9.0)对青蛙骨骼肌电荷移动电压依赖性的影响。2. 采用施奈德和钱德勒(1973年)的双态模型来描述膜电荷的电压分布。该模型的参数为:Qmax,最大电荷量;V,电荷均匀分布的电位;k,与电荷-电压关系陡度相关的常数。3. 在1.8 mM细胞外Ca2+中,细胞外pH的改变使转变电位V从pH 7.15时的平均±标准误-36.5±0.9 mV分别变为pH 5.5时的-25.8±1.3 mV和pH 9.0时的-42.5±1.8 mV。这些变化与表面电荷理论一致。在pH 5.5 - 9.0范围内,未观察到Qmax或k有显著变化。4. 利用表面电荷密度和结合常数:σ1 = -1 e/165 Å2,pK1 = 3.9以及σ2 = -1 e/400 Å2,pK2 = 8,可以使表面电荷理论合理拟合pH 5.5 - 9.0范围内V的变化。5. 然而,在pH 7.15时,V和k均随细胞外Ca2+浓度升高而变化。V从1.8 mM - Ca2+时的-34.9±3.7 mV分别变为25、50和100 mM - Ca2+时的-13.8±5.1 mV、-19.3±3.6 mV和3.3±9.3 mV。k从1.8 mM - Ca2+时的8.3±0.6 mV分别增加到25、50和100 mM - Ca2+时的15.3±1.4 mV、14.6±1.6 mV和20.0±2.9 mV。k的变化反映了表观带电粒子价态从1.8 mM - Ca2+时的约3降低到100 mM - Ca2+时的约1.2。随着细胞外Ca2+浓度升高,Qmax至少与1.8 mM - Ca2+时测得的一样大。带电基团表观价态43%的降低无法用简单的表面电荷理论解释,可能反映了细胞外Ca2+与带电基团之间的特异性相互作用。6. V随细胞外pH和Ca2+浓度改变而发生的变化与这些因素对肌纤维收缩阈值的影响一致。这一观察结果进一步支持了电荷移动参与肌肉收缩门控且带电粒子对跨肌细胞膜电场变化作出反应的假说。7. 在pH 7.15、1.8 mM - Ca2+条件下,于2 - 5℃对室温适应和冷适应青蛙的纤维进行测试,未观察到电荷移动参数有差异。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/086f/1281418/0b9e5dad143c/jphysiol00752-0137-a.jpg

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