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恶性高热:兴奋-收缩偶联、Ca2+释放通道及细胞Ca2+调节缺陷

Malignant hyperthermia: excitation-contraction coupling, Ca2+ release channel, and cell Ca2+ regulation defects.

作者信息

Mickelson J R, Louis C F

机构信息

Department of Veterinary PathoBiology, University of Minnesota, St. Paul, USA.

出版信息

Physiol Rev. 1996 Apr;76(2):537-92. doi: 10.1152/physrev.1996.76.2.537.

Abstract

Malignant hyperthermia (MH) is a disorder of skeletal muscle in which certain anesthetic agents trigger a sustained elevation in myoplasmic Ca2+ concentration that activates metabolic and contractile activity. This review focuses on the biochemical and physiological alterations in the skeletal muscle of MH-susceptible (MHS) pigs and humans that appear responsible for this inherited disorder. In porcine MH, these studies identified the skeletal muscle sarcoplasmic reticulum Ca2+ release channel gene (RYR1) as the site of the defect. A mutation in this protein results in altered excitation-contraction coupling and secondary changes in porcine muscle structure and function. Although RYR1 mutations have been reported in many MHS human families, there is also significant genetic heterogeneity, and much less is known as to the underlying mechanism responsible for altered human myoplasmic Ca2+ regulation. The effects of caffeine and anesthetic agents on MHS and normal muscle are also discussed to better understand the basis for the in vitro clinical test for this disorder and mechanisms responsible for the initiation and maintenance of MH episodes in susceptible individuals. Finally, we examine the possiblity of a defect in Ca2+ regulation in tissues other than skeletal muscle. Current understanding of the molecular basis of MH elegantly illustrates the successful integration of knowledge obtained from all fields of biological and clinical science.

摘要

恶性高热(MH)是一种骨骼肌疾病,某些麻醉剂会引发肌浆内钙离子浓度持续升高,从而激活代谢和收缩活动。本综述聚焦于易患恶性高热(MHS)的猪和人类骨骼肌中的生化及生理改变,这些改变似乎是导致这种遗传性疾病的原因。在猪的恶性高热研究中,这些研究确定骨骼肌肌浆网钙离子释放通道基因(RYR1)为缺陷位点。该蛋白的突变导致猪肌肉中兴奋 - 收缩偶联改变以及肌肉结构和功能的继发性变化。尽管在许多MHS人类家族中已报道了RYR1突变,但也存在显著的遗传异质性,对于导致人类肌浆内钙离子调节改变的潜在机制了解较少。还讨论了咖啡因和麻醉剂对MHS肌肉和正常肌肉的影响,以便更好地理解该疾病体外临床试验的基础以及易感个体中恶性高热发作起始和维持的机制。最后,我们研究了除骨骼肌外其他组织中钙离子调节缺陷的可能性。目前对恶性高热分子基础的理解很好地说明了从生物和临床科学所有领域获得的知识的成功整合。

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