Gallant Esther M, Hart James, Eager Kevin, Curtis Suzanne, Dulhunty Angela F
Muscle Researh Group, John Curtin School of Medical Research, Canberra, ACT 2601, Australia.
Am J Physiol Cell Physiol. 2004 Apr;286(4):C821-30. doi: 10.1152/ajpcell.00311.2003. Epub 2003 Nov 26.
Enhanced sensitivity to caffeine is part of the standard tests for susceptibility to malignant hyperthermia (MH) in humans and pigs. The caffeine sensitivity of skeletal muscle contraction and Ca(2+) release from the sarcoplasmic reticulum is enhanced, but surprisingly, the caffeine sensitivity of purified porcine ryanodine receptor Ca(2+)-release channels (RyRs) is not affected by the MH mutation (Arg(615)Cys). In contrast, we show here that native malignant hyperthermic pig RyRs (incorporated into lipid bilayers with RyR-associated lipids and proteins) were activated by caffeine at 100- to 1000-fold lower concentrations than native normal pig RyRs. In addition, the results show that the mutant ryanodine receptor channels were less sensitive to high-affinity activation by a peptide (C(S)) that corresponds to a part of the II-III loop of the skeletal dihydropyridine receptor (DHPR). Furthermore, subactivating concentrations of peptide C(S) enhanced the response of normal pig and rabbit RyRs to caffeine. In contrast, the caffeine sensitivity of MH RyRs was not enhanced by the peptide. These novel results showed that in MH-susceptible pig muscles 1). the caffeine sensitivity of native RyRs was enhanced, 2). the sensitivity of RyRs to a skeletal II-III loop peptide was depressed, and 3). an interaction between the caffeine and peptide C(S) activation mechanisms seen in normal RyRs was lost.
对咖啡因敏感性增强是人类和猪恶性高热(MH)易感性标准测试的一部分。骨骼肌收缩和肌浆网Ca(2+)释放的咖啡因敏感性增强,但令人惊讶的是,纯化的猪兰尼碱受体Ca(2+)释放通道(RyRs)的咖啡因敏感性不受MH突变(Arg(615)Cys)的影响。相比之下,我们在此表明,天然恶性高热猪的RyRs(与RyR相关脂质和蛋白质一起整合到脂质双层中)被咖啡因激活时的浓度比天然正常猪的RyRs低100至1000倍。此外,结果表明,突变的兰尼碱受体通道对与骨骼肌二氢吡啶受体(DHPR)II-III环一部分相对应的肽(C(S))的高亲和力激活不太敏感。此外,亚激活浓度的肽C(S)增强了正常猪和兔RyRs对咖啡因的反应。相比之下,肽并未增强MH RyRs对咖啡因的敏感性。这些新结果表明,在易患MH的猪肌肉中:1)天然RyRs的咖啡因敏感性增强;2)RyRs对骨骼肌II-III环肽的敏感性降低;3)正常RyRs中所见的咖啡因和肽C(S)激活机制之间的相互作用丧失。