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通过施加离子梯度对剥除肌膜的肌纤维进行刺激。IV. 拉伸和高氯酸根离子的作用。

Excitation of skinned muscle fibers by imposed ion gradients. IV. Effects of stretch and perchlorate ion.

作者信息

Stephenson E W

机构信息

Department of Physiology, University of Medicine and Dentistry, New Jersey Medical School, Newark 07103.

出版信息

J Gen Physiol. 1989 Jan;93(1):173-92. doi: 10.1085/jgp.93.1.173.

Abstract

Depolarizing ion gradients stimulate 45Ca release in skeletal muscle fibers skinned by microdissection. Several lines of indirect evidence suggest that sealed transverse (T) tubules rather than sarcoplasmic reticulum (SR) are the locus of such stimulatory depolarization. Two implications of this hypothesis were tested. (a) A requirement for signal transmission was evaluated from the stimulation of 45Ca efflux in fibers that had been highly stretched, an intervention that can impair the electrical stimulation of intact fibers. Length was increased over approximately 95-115 s, after loading with 45Ca and rinsing at normal length; prestimulus 45Ca loss due to stretch itself was very small. In the first study, stimulation of 45Ca release by KCl replacement of K propionate was inhibited completely in fibers stretched to twice slack length, compared with fibers at 1.05-1.1 times slack length. Identical protocols did not alter 45Ca release stimulated by caffeine or Mg2+ reduction, implying that SR Ca release per se was fully functional and inhibition was selective for a preceding step in ionic stimulation. In a second study, stimulation by choline Cl replacement of K methanesulfonate, at constant [K+] [Cl-] product, was inhibited strongly; total 45Ca release decreased 69%, and stimulation above control loss decreased 78%, in segments stretched to twice the length at which sarcomere spacing had been 2.2 micron, compared with paired controls from the same fibers kept at 2.3 micron. (b) Perchlorate potentiation of T tubule activation was evaluated in fibers stimulated at constant [K+] [Cl-] at normal length (2.3 micron); this anion shifts the voltage dependence of intramembrane charge movement and contractile activation in intact fibers. Perchlorate (8 mM) potentiated both submaximal stimulation of Ca2+-dependent 45Ca release by partial choline Cl replacement of K methanesulfonate and the small Ca2+-insensitive 45Ca efflux component stimulated by nearly full replacement in the presence of 5 mM EGTA. These results provide independent support for the hypothesis that the T tubules are the locus of stimulation by depolarizing ion gradients, with junctional transmission of this signal causing SR 45Ca release.

摘要

去极化离子梯度刺激经显微解剖剥除肌膜的骨骼肌纤维释放45Ca。几条间接证据表明,封闭的横管而非肌浆网(SR)是这种刺激性去极化的位点。对这一假说的两个推论进行了验证。(a) 通过检测高度拉伸纤维中45Ca外流的刺激情况来评估信号传递的必要性,这种干预会损害完整纤维的电刺激。在加载45Ca并在正常长度冲洗后,长度在大约95 - 115秒内增加;拉伸本身导致的刺激前45Ca损失非常小。在第一项研究中,与处于1.05 - 1.1倍松弛长度的纤维相比,拉伸至两倍松弛长度的纤维中,用KCl替代丙酸钾刺激45Ca释放的作用被完全抑制。相同的实验方案并未改变咖啡因或降低Mg2+刺激的45Ca释放,这意味着SR Ca释放本身功能完全正常,抑制作用是针对离子刺激的前一步骤具有选择性。在第二项研究中,在[K+][Cl-]乘积恒定的情况下,用胆碱Cl替代甲磺酸钾进行刺激时受到强烈抑制;与来自同一纤维且肌节间距保持在2.3微米的配对对照相比,拉伸至肌节间距为2.2微米时长度两倍的片段中,总45Ca释放减少了69%,高于对照损失的刺激减少了78%。(b) 在正常长度(2.3微米)下以恒定[K+][Cl-]刺激的纤维中评估高氯酸盐对横管激活的增强作用;这种阴离子会改变完整纤维中膜内电荷移动和收缩激活的电压依赖性。高氯酸盐(8 mM)增强了通过部分用胆碱Cl替代甲磺酸钾对Ca2+依赖性45Ca释放的亚最大刺激,以及在5 mM EGTA存在下几乎完全替代时刺激的小的Ca2+不敏感45Ca外流成分。这些结果为横管是去极化离子梯度刺激位点的假说提供了独立支持,这种信号的连接传递导致SR 45Ca释放。

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