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咖啡因对恶性高热易感性肌浆网Ca2+释放通道的刺激作用。

Caffeine stimulation of malignant hyperthermia-susceptible sarcoplasmic reticulum Ca2+ release channel.

作者信息

Shomer N H, Mickelson J R, Louis C F

机构信息

Department of Veterinary Pathobiology, University of Minnesota, St. Paul 55108.

出版信息

Am J Physiol. 1994 Nov;267(5 Pt 1):C1253-61. doi: 10.1152/ajpcell.1994.267.5.C1253.

Abstract

The altered caffeine sensitivity of malignant hyperthermia-susceptible (MHS) muscle contracture is one basis of the diagnostic test for this syndrome. To determine whether the Arg615-to-Cys615 mutation of the porcine sarcoplasmic reticulum (SR) Ca2+ release channel is directly responsible for this altered caffeine sensitivity, the single-channel kinetics of purified MHS and normal pig Ca2+ release channels were examined. Initial studies demonstrated that decreasing the pH of the medium in either the cis- or trans-chamber decreased the Ca2+ release channel percent open time (Po). The half-inhibitory pH of MHS channels (6.86 +/- 0.04, n = 17) was significantly different from that of normal channels (7.08 +/- 0.07, n = 14). At pH 7.4, in either 7 or 0.12 microM Ca2+, MHS channel Po was not significantly different from that of normal channels over the range 0-10 mM caffeine. Although at pH 6.8 in 7 microM Ca2+ MHS channel Po was greater than that of normal channels over the range 0-20 mM caffeine, the difference could be eliminated by dividing each mean MHS Po by a scaling factor of 3.2. Thus the MHS Ca2+ release channel mutation does not appear to be directly responsible for the altered caffeine sensitivity of MHS pig muscle contracture. Rather, this altered caffeine sensitivity may result from an altered resting myoplasmic Ca2+ concentration or the altered pH and Ca2+ sensitivity of Ca2+ release channel Po of MHS muscle.

摘要

恶性高热易感(MHS)肌肉挛缩对咖啡因敏感性的改变是该综合征诊断测试的一个依据。为了确定猪肌浆网(SR)Ca2+释放通道的Arg615到Cys615突变是否直接导致了这种咖啡因敏感性的改变,研究了纯化的MHS和正常猪Ca2+释放通道的单通道动力学。初步研究表明,降低顺式或反式腔室中培养基的pH值会降低Ca2+释放通道的开放时间百分比(Po)。MHS通道的半抑制pH值(6.86±0.04,n = 17)与正常通道(7.08±0.07,n = 14)有显著差异。在pH 7.4时,在7或0.12 microM Ca2+中,在0-10 mM咖啡因范围内,MHS通道的Po与正常通道没有显著差异。尽管在pH 6.8、7 microM Ca2+条件下,在0-20 mM咖啡因范围内MHS通道的Po大于正常通道,但通过将每个MHS Po平均值除以3.2的比例因子,可以消除这种差异。因此,MHS Ca2+释放通道突变似乎不是MHS猪肌肉挛缩咖啡因敏感性改变的直接原因。相反,这种咖啡因敏感性的改变可能是由于静息肌浆Ca2+浓度的改变,或者是MHS肌肉Ca2+释放通道Po的pH值和Ca2+敏感性的改变所致。

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