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青蛙骨骼肌纤维膜内电荷移动和钙释放通量中的阻尼振荡。

A damped oscillation in the intramembranous charge movement and calcium release flux of frog skeletal muscle fibers.

作者信息

Shirokova N, Pizarro G, Ríos E

机构信息

Department of Physiology, Rush University School of Medicine, Chicago, Illinois 60612.

出版信息

J Gen Physiol. 1994 Sep;104(3):449-76. doi: 10.1085/jgp.104.3.449.

Abstract

Asymmetric membrane currents and calcium transients were recorded simultaneously from cut segments of frog skeletal muscle fibers voltage clamped in a double Vaseline-gap chamber in the presence of high concentration of EGTA intracellularly. An inward phase of asymmetric currents following the hump component was observed in all fibers during the depolarization pulse to selected voltages (congruent to -45 mV). The average value of the peak inward current was 0.1 A/F (SEM = 0.01, n = 18), and the time at which it occurred was 34 ms (SEM = 1.8, n = 18). A second delayed outward phase of asymmetric current was observed after the inward phase, in those experiments in which hump component and inward phase were large. It peaked at more variable time (between 60 and 130 ms) with amplitude 0.02 A/F (SEM = 0.003, n = 11). The transmembrane voltage during a pulse, measured with a glass microelectrode, reached its steady value in less than 10 ms and showed no oscillations. The potential was steady at the time when the delayed component of asymmetric current occurred. ON and OFF charge transfers were equal for all pulse durations. The inward phase moved 1.4 nC/microF charge (SEM = 0.8, n = 6), or about one third of the final value of charge mobilized by these small pulses, and the second outward phase moved 0.7 nC/microF (SEM = 0.8, n = 6), bringing back about half of the charge moved during the inward phase. When repolarization intersected the peak of the inward phase, the OFF charge transfer was independent of the repolarization voltage in the range -60 to -90 mV. When both pre- and post-pulse voltages were changed between -120 mV and -60 mV, the equality of ON and OFF transfers of charge persisted, although they changed from 113 to 81% of their value at -90 mV. The three delayed phases in asymmetric current were also observed in experiments in which the extracellular solution contained Cd2+, La3+ and no Ca2+. Large increases in intracellular [Cl-] were imposed, and had no major effect on the delayed components of the asymmetric current. The Ca2+ transients measured optically and the calculated Ca2+ release fluxes had three phases whenever a visible outward phase followed the inward phase in the asymmetric current. Several interventions intended to interfere with Ca release, reduced or eliminated the three delayed phases of the asymmetric current.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

在细胞内存在高浓度乙二醇双乙酸盐(EGTA)的情况下,将青蛙骨骼肌纤维的切段置于双凡士林间隙室中进行电压钳制,同时记录不对称膜电流和钙瞬变。在向选定电压(约-45 mV)去极化脉冲期间,所有纤维均观察到跟随驼峰成分之后的不对称电流内向相。内向电流峰值的平均值为0.1 A/F(标准误=0.01,n = 18),其出现时间为34 ms(标准误=1.8,n = 18)。在那些驼峰成分和内向相较大的实验中,内向相之后观察到不对称电流的第二个延迟外向相。其峰值出现在更可变的时间(60至130 ms之间),幅度为0.02 A/F(标准误=0.003,n = 11)。用玻璃微电极测量的脉冲期间跨膜电压在不到10 ms内达到其稳定值,且无振荡。在不对称电流延迟成分出现时,电位是稳定的。对于所有脉冲持续时间,开和关电荷转移相等。内向相转移1.4 nC/μF电荷(标准误=0.8,n = 6),约为这些小脉冲调动的电荷最终值的三分之一,第二个外向相转移0.7 nC/μF(标准误=0.8,n = 6),带回内向相期间转移电荷的约一半。当复极化与内向相峰值相交时,关电荷转移在-60至-90 mV范围内与复极化电压无关。当脉冲前和脉冲后电压在-120 mV和-60 mV之间变化时,电荷的开和关转移相等仍然存在,尽管它们从-90 mV时的值的113%变为81%。在细胞外溶液含有Cd2+、La3+且无Ca2+的实验中也观察到不对称电流的三个延迟相。细胞内[Cl-]大幅增加,对不对称电流的延迟成分没有主要影响。每当不对称电流中可见外向相跟随内向相时,光学测量的钙瞬变和计算的钙释放通量有三个阶段。几种旨在干扰钙释放的干预措施减少或消除了不对称电流的三个延迟相。(摘要截短于400字)

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