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D-600对极化和去极化青蛙肌肉纤维膜内电荷移动的影响。

Effects of D-600 on intramembrane charge movement of polarized and depolarized frog muscle fibers.

作者信息

Caputo C, Bolaños P

机构信息

Laboratorio de Biofísica del Músculo, Instituto Venezolano de Investigaciones Científicas, Caracas.

出版信息

J Gen Physiol. 1989 Jul;94(1):43-64. doi: 10.1085/jgp.94.1.43.

Abstract

Intramembrane charge movement has been measured in frog cut skeletal muscle fibers using the triple vaseline gap voltage-clamp technique. Ionic currents were reduced using an external solution prepared with tetraethylammonium to block potassium currents, and O sodium + tetrodotoxin to abolish sodium currents. The internal solution contained 10 mM EGTA to prevent contractions. Both the internal and external solutions were prepared with impermeant anions. Linear capacitive currents were subtracted using the P-P/4 procedure, with the control pulses being subtracted either at very negative potentials, for the case of polarized fibers, or at positive potentials, for the case of depolarized fibers. In 63 polarized fibers dissected from Rana pipiens or Leptodactylus insularis frogs the following values were obtained for charge movement parameters: Qmax = 39 nC/microF, V = 36 mV, k = 18.5 mV. After depolarization we found that the total amount of movable charge was not appreciably reduced, while the voltage sensitivity was much changed. For 10 fibers, in which charge movement was measured at -100 and at 0 mV, Qmax changed from 46 to 41 nC/microF, while V changed from -41 to -103 mV and k changed from 20.5 to 30 mV. Thus membrane depolarization to 0 mV produces a shift of greater than 50 mV in the Q-V relationship and a decrease of the slope. Membrane depolarization to -20 and -30 mV, caused a smaller shift of the Q-V relationship. In normally polarized fibers addition of D-600 at concentrations of 50-100 microM, does not cause important changes in charge movement parameters. However, the drug appears to have a use-dependent effect after depolarization. Thus in depolarized fibers, total charge is reduced by approximately 20%. D-600 causes no further changes in the voltage sensitivity of charge movement in fibers depolarized to 0 mV, while in fibers depolarized to -20 and -30 mV it causes the same effects as that obtained with depolarization to 0 mV. These results are compatible with the idea that after depolarization charge 1 is transformed into charge 2. D-600 appears to favor the conversion of charge 1 into charge 2. Since D-600 also favors contractile inactivation, charge 2 could represent the state of the voltage sensor for excitation-contraction coupling in the inactivated state.

摘要

利用三凡士林间隙电压钳技术,在青蛙离体骨骼肌纤维中测量了膜内电荷移动。使用含四乙铵的外部溶液阻断钾电流,并使用含钠 + 河豚毒素的溶液消除钠电流,从而降低离子电流。内部溶液含有10 mM乙二醇双乙醚二胺四乙酸(EGTA)以防止收缩。内部和外部溶液均用非渗透性阴离子配制。使用P - P/4程序减去线性电容电流,对于极化纤维,在非常负的电位下减去对照脉冲;对于去极化纤维,则在正电位下减去对照脉冲。在从豹蛙或海岛细趾蟾蛙解剖的63根极化纤维中,获得了以下电荷移动参数值:Qmax = 39 nC/微法,V = 36 mV,k = 18.5 mV。去极化后,我们发现可移动电荷的总量没有明显减少,而电压敏感性发生了很大变化。对于10根在 - 100 mV和0 mV下测量电荷移动的纤维,Qmax从46变为41 nC/微法,而V从 - 41变为 - 103 mV,k从20.5变为30 mV。因此,膜去极化至0 mV会使Q - V关系发生大于50 mV的偏移,并使斜率减小。膜去极化至 - 20 mV和 - 30 mV会导致Q - V关系较小的偏移。在正常极化的纤维中,添加浓度为50 - 100 microM的D - 600不会引起电荷移动参数的重要变化。然而,该药物在去极化后似乎具有使用依赖性效应。因此,在去极化的纤维中,总电荷减少约20%。D - 600不会使去极化至0 mV的纤维中电荷移动的电压敏感性进一步改变,而在去极化至 - 20 mV和 - 30 mV的纤维中,它产生的效应与去极化至0 mV时相同。这些结果与去极化后电荷1转化为电荷2的观点一致。D - 600似乎有利于电荷1转化为电荷2。由于D - 600也有利于收缩失活,电荷2可能代表失活状态下兴奋 - 收缩偶联的电压传感器状态。

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