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Time domain spectroscopy of the membrane capacitance in frog skeletal muscle.

机译:青蛙骨骼肌膜电容的时域光谱。

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摘要

Dielectric spectra representing the frequency dependence of the complex permitivity at a range of depolarizations were obtained from voltage-clamped frog skeletal muscle membranes. This employed an analysis that derived the Fourier coefficients defining the capacitative transients to 10 mV steps as continuous functions of frequency, and so could examine closely the relevant frequencies at which non-linear components occurred. Non-linear capacitative components were identified through their appearance at lower frequencies than those of the linear components as obtained at the -85 mV control voltage, from spectra representing a logarithmic scale of frequencies. Permitivities from small depolarizing steps between about -75 and -50 mV gave single q beta dielectric loss peaks; the real permitivities declined monotonically with increasing frequency. Simple arc loci were obtained in the complex plane. With further depolarization, an additional q gamma loss peak at low frequencies and a resonant frequency in the real spectra occurred over a narrow voltage range around -45 mV. The complex loci then showed features implying an increased movement of charge not explicable through the simple effect of an electric field on a dielectric species. Spectra from small hyperpolarizing steps possessed only single dielectric loss peaks and real permitivities that declined monotonically with increasing frequency. However, in the complex plane, the loss tangents at the higher frequencies implied a population of two or more dielectric relaxations. The potential dependence of the frequency at maximum dielectric loss obtained from depolarizing steps showed a discontinuity at the onset of q gamma. In contrast, in hyperpolarizing responses, this dependence was smooth. The q beta relaxations obtained after q gamma was abolished by 1 mM-tetracaine gave dielectric spectra that were similar whether to depolarizing or hyperpolarizing potential steps. They gave single dielectric loss peaks and semicircular complex plane loci. The singularities in the dielectric spectra thus result from the q gamma charge movement component. They may reflect co-operative mechanisms that might also produce its steep voltage dependence and kinetics, and consequently those of the physiological processes it may control. These are discussed in terms of the mechanisms expected in allosteric proteins.
机译:从电压钳制的青蛙骨骼肌膜获得介电谱,该介电谱表示复电容率在一定去极化范围内的频率依赖性。这采用了一项分析,该分析得出了将电容性瞬态定义为10 mV阶跃的傅立叶系数作为频率的连续函数,因此可以仔细检查非线性分量发生的相关频率。通过以比对数标度的频谱,在比-85 mV控制电压下获得的线性分量低的频率下,通过发现它们的频率来识别非线性电容性分量。大约-75至-50 mV之间的小的去极化步骤所产生的介电常数给出了单个qβ介电损耗峰;实际介电常数随频率增加而单调下降。在复杂平面中获得了简单的弧位。随着进一步的去极化,在-45 mV左右的窄电压范围内,低频处会出现一个额外的q伽马损耗峰,而实谱中会出现一个谐振频率。复杂的位点随后显示出暗示电荷增加运动的特征,这是通过电场对介电物质的简单作用无法解释的。来自小的超极化步骤的光谱仅具有单个介电损耗峰和实际介电常数,其随频率增加而单调下降。但是,在复平面中,较高频率下的损耗角正切意味着存在两个或多个介电弛豫。从去极化步骤获得的最大介电损耗下频率的电位依赖性在q伽玛值开始时就显示出不连续性。相反,在超极化反应中,这种依赖性是平稳的。用1 mM-丁卡因消除qγ后获得的q beta弛豫得到的介电谱与去极化或超极化电位阶跃相似。他们给出了单个介电损耗峰和半圆形复平面轨迹。因此,介电谱中的奇异性是由qγ电荷运动分量引起的。它们可能反映了合作机制,这些合作机制也可能产生陡峭的电压依赖性和动力学,因此也可能会控制其生理过程。这些是根据变构蛋白中预期的机制进行讨论的。

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