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整合到平面双层膜中的兔肌肉钙激活钾通道的动力学。钙和钡阻断的证据。

Kinetics of Ca2+-activated K+ channels from rabbit muscle incorporated into planar bilayers. Evidence for a Ca2+ and Ba2+ blockade.

作者信息

Vergara C, Latorre R

出版信息

J Gen Physiol. 1983 Oct;82(4):543-68. doi: 10.1085/jgp.82.4.543.

Abstract

The interaction of Ca2+ and Ba2+ with a Ca2+-activated K+ channel from rabbit skeletal muscle membranes is studied in planar lipid bilayers. At [Ca2+] greater than or equal to 100 microM in the cis side (the side to which the vesicles are added) and at positive voltages, the channel kinetics consisted of bursts of activity interrupted by long periods of quiescence. We found that the reciprocal of the mean burst time increases linearly with [Ca2+], whereas the mean time for the quiescent (closed) periods is independent of [Ca2+]. The number of quiescent periods is reduced by increasing [K+]. Micromolar amounts of cis Ba2+ do not activate the channel, but induce similar "slow" closings. Also, in this case, the mean burst time is inversely proportional to the [Ba2+] and the mean closed time is independent of [Ba2+]. Raising [K+] either symmetrically or only in the trans side relieved the Ba2+ effect. trans Ba2+ also induces changes in the slow kinetics, but in millimolar amounts. These results suggest that the quiescent periods correspond to a channel blocked by a Ba ion. The voltage dependence of the cis blockade indicates that the Ba2+ binding site is past the middle of the membrane field. The similarities in the slow kinetics induced by Ca2+ and Ba2+ suggest that Ca2+ blocks the channel by binding to the same site. However, binding of Ca2+ to the site is 10(5)-fold weaker.

摘要

在平面脂质双分子层中研究了Ca2+和Ba2+与兔骨骼肌细胞膜上Ca2+激活的K+通道的相互作用。在顺式侧(添加囊泡的一侧)[Ca2+]大于或等于100微摩尔且处于正电压时,通道动力学由长时间静止中断的活动爆发组成。我们发现平均爆发时间的倒数随[Ca2+]线性增加,而静止(关闭)期的平均时间与[Ca2+]无关。通过增加[K+]可减少静止期的数量。微摩尔量的顺式Ba2+不会激活通道,但会诱导类似的“缓慢”关闭。同样,在这种情况下,平均爆发时间与[Ba2+]成反比,平均关闭时间与[Ba2+]无关。对称地或仅在反式侧提高[K+]可减轻Ba2+的作用。反式Ba2+也会诱导缓慢动力学的变化,但需要毫摩尔量。这些结果表明静止期对应于被Ba离子阻断的通道。顺式阻断的电压依赖性表明Ba2+结合位点在膜电场的中部之后。Ca2+和Ba2+诱导的缓慢动力学的相似性表明Ca2+通过结合到同一位点来阻断通道。然而,Ca2+与该位点的结合弱10^5倍。

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