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来自骨骼肌的天然肌浆网膜中的单个钙通道。

Single calcium channels in native sarcoplasmic reticulum membranes from skeletal muscle.

作者信息

Suarez-Isla B A, Orozco C, Heller P F, Froehlich J P

出版信息

Proc Natl Acad Sci U S A. 1986 Oct;83(20):7741-5. doi: 10.1073/pnas.83.20.7741.

Abstract

Electrical properties of native sarcoplasmic reticulum membranes from rabbit skeletal muscle were investigated using the patch-clamp technique. Bilayers were assembled at the tip of patch pipettes from monolayers formed at the air-water interface of sarcoplasmic reticulum membrane suspensions. The membranes were found to contain a spontaneously active cation channel of small conductance (5 pS in 200 mM CaCl2, symmetrical solutions) that was selective for Ca2+ and Ba2+. Between 50 and 200 mM CaCl2 (symmetrical) the increase in conductance as a function of [Ca2+] fit a hyperbola (K0.5, 83 mM, and gamma max, 7.9 pS) that extrapolated to a single-channel conductance of 0.5 pS at physiological Ca2+ levels. The channel opened in bursts followed by long silent periods of up to a minute. During a burst the channel fluctuated very rapidly with time constants in the millisecond range. The mean burst duration was voltage dependent, increasing from 1.8 s at a pipette voltage of +60 mV to 4.1 s at +80 mV. Over this range, burst frequency decreased with increasing voltage such that the fraction of time spent in the open state (fb) remained constant. Application of 1.6 mM caffeine resulted in activation of the channel that appeared as an increase in mean burst duration. In contrast, 50 microM dantrolene significantly decreased burst frequency, whereas 10 microM nitrendipine had no effect. The functional and pharmacological properties of this Ca2+ channel suggest that it may be important in mediating Ca2+ release from the sarcoplasmic reticulum during excitation-contraction coupling.

摘要

采用膜片钳技术研究了兔骨骼肌天然肌浆网膜的电学性质。双层膜在膜片吸管尖端由肌浆网膜悬浮液气-水界面形成的单层组装而成。发现这些膜含有一种自发激活的小电导阳离子通道(在200 mM CaCl2对称溶液中为5 pS),对Ca2+和Ba2+具有选择性。在50至200 mM CaCl2(对称)之间,电导随[Ca2+]的增加符合双曲线(K0.5为83 mM,γmax为7.9 pS),在生理Ca2+水平下外推至单通道电导为0.5 pS。该通道呈爆发式开放,随后有长达一分钟的长时间静息期。在一次爆发期间,通道随时间快速波动,时间常数在毫秒范围内。平均爆发持续时间依赖于电压,从移液器电压为+60 mV时的1.8秒增加到+80 mV时的4.1秒。在此范围内,爆发频率随电压增加而降低,使得处于开放状态的时间分数(fb)保持恒定。施加1.6 mM咖啡因会导致通道激活,表现为平均爆发持续时间增加。相反,50 μM丹曲林显著降低爆发频率,而10 μM尼群地平则无作用。这种Ca2+通道的功能和药理特性表明,它可能在兴奋-收缩偶联期间介导肌浆网Ca2+释放中起重要作用。

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