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骨骼肌肌浆网钙释放通道的单通道测量。Ca2+和ATP的激活以及Mg2+的调节。

Single channel measurements of the calcium release channel from skeletal muscle sarcoplasmic reticulum. Activation by Ca2+ and ATP and modulation by Mg2+.

作者信息

Smith J S, Coronado R, Meissner G

出版信息

J Gen Physiol. 1986 Nov;88(5):573-88. doi: 10.1085/jgp.88.5.573.

Abstract

A high-conductance (100 pS in 53 mM trans Ca2+) Ca2+ channel was incorporated from heavy-density skeletal muscle sarcoplasmic reticulum (SR) fractions into planar lipid bilayers of the Mueller-Rudin type. cis Ca2+ in the range of 2-950 microM increased open probability (Po) in single channel records without affecting open event lifetimes. Millimolar ATP was found to be as good as or better than Ca2+ in activation; however, both Ca2+ and ATP were required to fully activate the channel, i.e., to bring Po = 1. Exponential fits to open and closed single channel lifetimes suggested that the channel may exist in many distinct states. Two open and two closed states were identified when the channel was activated by either Ca2+ or ATP alone or by Ca2+ plus nucleotide. Mg2+ was found to permeate the SR Ca channel in a trans-to-cis direction such that iMg2+/iCa2+ = 0.40. cis Mg2+ was inhibitory and in single channel recordings produced an unresolvable flickering of Ca- and nucleotide-activated channels. At nanomolar cis Ca2+, 4 microM Mg2+ completely inhibited nucleotide-activated channels. In the presence of 2 microM cis Ca2+, the nucleotide-activated macroscopic Ba conductance was inhibited by cis Mg2+ with an IC50 equal to 1.5 mM.

摘要

一种高电导率(在53 mM反式Ca2+中为100 pS)的Ca2+通道从高密度骨骼肌肌浆网(SR)组分整合到穆勒 - 鲁丁型平面脂质双分子层中。2 - 950 microM范围内的顺式Ca2+增加了单通道记录中的开放概率(Po),而不影响开放事件的持续时间。发现毫摩尔浓度的ATP在激活方面与Ca2+一样好或更好;然而,Ca2+和ATP都需要才能完全激活通道,即使Po = 1。对开放和关闭的单通道寿命进行指数拟合表明,通道可能存在于许多不同的状态。当通道单独由Ca2+或ATP激活或由Ca2+加核苷酸激活时,确定了两个开放状态和两个关闭状态。发现Mg2+以反式到顺式的方向通透SR Ca通道,使得iMg2+/iCa2+ = 0.40。顺式Mg2+具有抑制作用,在单通道记录中会使Ca2+和核苷酸激活的通道产生无法分辨的闪烁。在纳摩尔浓度的顺式Ca2+存在下,4 microM Mg2+完全抑制核苷酸激活的通道。在2 microM顺式Ca2+存在的情况下,顺式Mg2+抑制核苷酸激活的宏观Ba电导率,IC50等于1.5 mM。

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Activation of calcium channels.钙通道的激活。
Biophys J. 1984 Jan;45(1):125-7. doi: 10.1016/S0006-3495(84)84134-X.
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