Anderson L C, Fruen B R, Jordan R C, Louis C F, Gallant E M
Department of Veterinary PathoBiology, University of Minnesota, 1988 Fitch Avenue, Room 295, St. Paul, MN 55108, USA.
Pflugers Arch. 1997 Dec;435(1):91-8. doi: 10.1007/s004240050487.
To better understand the altered skeletal muscle excitation-contraction (E-C) coupling that occurs in malignant hyperthermia, we have examined the potentiating actions of perchlorate in intact muscle fiber bundles, isolated sarcoplasmic reticulum (SR) vesicles, and the purified ryanodine receptor/Ca2+ release channel (RyR) isolated from malignant-hyperthermia-susceptible (MHS) and normal porcine muscle. The concentration of perchlorate that half-maximally potentiated twitch tension (2.5-3.5 mM) was not significantly different for MHS and normal muscles. The effect of perchlorate on fractional twitch force was significantly greater for normal than for MHS muscle, although the absolute twitch potentiation was similar for both muscle types. The K-contracture threshold of MHS muscle bundles is significantly lower than that of normal bundles; perchlorate shifted the K-contraction activation curves of both MHS and normal muscle bundles to lower K+ concentrations. Perchlorate both increased ryanodine binding to MHS and normal SR vesicles and increased single-channel open probability of the purified MHS and normal RyR. In both cases, the percentage increase was greater for normal than for MHS preparations; however, the absolute increase in activity was not different for MHS and normal RyR indicating that there is no difference in the perchlorate sensitivity of MHS and normal SR Ca2+ release channels. Thus, the greater absolute responses of the MHS Ca2+ release channel in the presence of perchlorate is likely to be due to the greater basal activity of the MHS release channel and does not reflect an underlying defect in the site of action of perchlorate on the MHS skeletal muscle Ca2+ release channel.
为了更好地理解恶性高热时发生的骨骼肌兴奋-收缩(E-C)偶联改变,我们研究了高氯酸盐对完整肌纤维束、分离的肌浆网(SR)囊泡以及从恶性高热易感(MHS)和正常猪肌肉中分离的纯化兰尼碱受体/Ca2+释放通道(RyR)的增强作用。使抽搐张力增强至半数最大效应时的高氯酸盐浓度(2.5 - 3.5 mM),在MHS肌肉和正常肌肉之间无显著差异。高氯酸盐对正常肌肉的抽搐力分数的影响比对MHS肌肉显著更大,尽管两种肌肉类型的绝对抽搐增强相似。MHS肌束的K+挛缩阈值显著低于正常肌束;高氯酸盐使MHS和正常肌束的K+挛缩激活曲线向更低的K+浓度方向移动。高氯酸盐既增加了兰尼碱与MHS和正常SR囊泡的结合,也增加了纯化的MHS和正常RyR的单通道开放概率。在这两种情况下,正常制剂的增加百分比均大于MHS制剂;然而,MHS和正常RyR的活性绝对增加量并无差异,这表明MHS和正常SR Ca2+释放通道对高氯酸盐的敏感性没有差异。因此,在高氯酸盐存在下MHS Ca2+释放通道更大的绝对反应可能是由于MHS释放通道的基础活性更高,而并不反映高氯酸盐作用于MHS骨骼肌Ca2+释放通道位点的潜在缺陷。