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青蛙骨骼肌中的收缩阈值与电荷移动的“驼峰”成分

Contraction threshold and the "hump" component of charge movement in frog skeletal muscle.

作者信息

Szücs G, Csernoch L, Magyar J, Kovács L

机构信息

Department of Physiology, University Medical School, Debrecen, Hungary.

出版信息

J Gen Physiol. 1991 May;97(5):897-911. doi: 10.1085/jgp.97.5.897.

Abstract

The delayed component of intramembranous charge movement (hump, I gamma) was studied around the contraction threshold in cut skeletal muscle fibers of the frog (Rana esculenta) in a single Vaseline-gap voltage clamp. Charges (Q) were computed as 50-ms integrals of the ON (QON) and OFF (QOFF) of the asymmetric currents after subtracting a baseline. The hump appeared in parallel with an excess of QON over QOFF by approximately 2.5 nC/mu F. Caffeine (0.75 mM) not only shifted the contraction threshold but moved both the hump and the difference between the ON and OFF charges to more negative membrane potentials. When using 10-mV voltage steps on top of different prepulse levels, the delayed component, if present, was more readily observable. The voltage dependences of the ON and OFF charges measured with these pulses were clearly different: QON had a maximum at or slightly above the contraction threshold, while QOFF increased monotonically in the voltage range examined. Caffeine (0.75 mM) shifted this voltage dependence of QON toward more negative membrane potentials, while that of QOFF was hardly influenced. These results show that the delayed component of intramembranous charge movement either is much slower during the OFF than during the ON, or returns to the OFF position during the pulse. Tetracaine (25 microM) had similar effects on the charge movement currents, shifting the voltage dependence on the ON charge in parallel with the contraction threshold, but to more positive membrane potentials, and leaving QOFF essentially unchanged. The direct difference between the charge movement measured in the presence of caffeine and in control solution was either biphasic or resembled the component isolated by tetracaine, suggesting a common site of caffeine and tetracaine action. The results can be understood if the released Ca plays a direct role in the generation of the hump, as proposed in the first paper of this series (Csernoch et al. 1991. J. Gen. Physiol. 97:845-884).

摘要

在单个凡士林间隙电压钳中,研究了食用蛙(食用蛙)离体骨骼肌纤维收缩阈值附近的膜内电荷移动延迟成分(驼峰,Iγ)。电荷(Q)通过在减去基线后对不对称电流的开启(QON)和关闭(QOFF)进行50毫秒积分来计算。驼峰的出现与QON比QOFF多出约2.5 nC/μF同时发生。咖啡因(0.75 mM)不仅改变了收缩阈值,还使驼峰以及开启和关闭电荷之间的差异移向更负的膜电位。当在不同的预脉冲水平之上使用10 mV电压阶跃时,如果存在延迟成分,则更容易观察到。用这些脉冲测量的开启和关闭电荷的电压依赖性明显不同:QON在收缩阈值或略高于收缩阈值处有最大值,而QOFF在所研究的电压范围内单调增加。咖啡因(0.75 mM)使QON的这种电压依赖性移向更负的膜电位,而QOFF的电压依赖性几乎不受影响。这些结果表明,膜内电荷移动的延迟成分在关闭期间要么比开启期间慢得多,要么在脉冲期间回到关闭位置。丁卡因(25 μM)对电荷移动电流有类似影响,使开启电荷的电压依赖性与收缩阈值平行移动,但移向更正的膜电位,而QOFF基本不变。在咖啡因存在下和对照溶液中测量的电荷移动之间的直接差异要么是双相的,要么类似于丁卡因分离的成分,表明咖啡因和丁卡因的作用位点相同。如果如本系列第一篇论文(Csernoch等人,1991年。《普通生理学杂志》97:845 - 884)所提出的,释放的Ca在驼峰的产生中起直接作用,那么这些结果是可以理解的。

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