首页> 外文OA文献 >Alteration of intracellular Ca2+ transients in COS-7 cells transfected with the cDNA encoding skeletal-muscle ryanodine receptor carrying a mutation associated with malignant hyperthermia.
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Alteration of intracellular Ca2+ transients in COS-7 cells transfected with the cDNA encoding skeletal-muscle ryanodine receptor carrying a mutation associated with malignant hyperthermia.

机译:转染COS-7细胞的细胞内Ca2 +瞬变的变化,该DNA转染了带有与恶性高热相关的突变的编码骨骼肌Ryanodine受体的cDNA。

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摘要

Malignant hyperthermia (MH), an inherited neuromuscular disease triggered by halogenated inhalational anaesthetics and skeletal-muscle relaxants, appears to be due to an alteration of intracellular Ca2+ homoeostasis. MH occurs in 1 out of 20,000 anaesthetized adults and is characterized by hypermetabolism, skeletal-muscle rigidity and elevation in body temperature, which is frequently fatal [MacLennan and Phillips (1992) Science 256, 789-794]. The defect responsible for the disease may lie within the mechanism controlling the release of Ca2+ from sarcoplasmic reticulum via the ryanodine-receptor (RYR) Ca2+ channel; in fact a point mutation in the RYR has been associated with MH in some human families, as well as in the MH-susceptible pig. To date, however, no direct evidence has been obtained demonstrating that the point mutation is both necessary and sufficient to cause functional alterations in RYR-mediated Ca2+ release. In the present report we show that the presence of the Arg-to-Cys point mutation in the recombinant RYR expressed in COS-7 transfected cells causes abnormal cytosolic Ca2+ transients in response to 4-chloro-m-cresol, an agent capable of eliciting in vitro contracture of MH-susceptible muscles.
机译:恶性高热(MH)是一种由卤代吸入麻醉药和骨骼肌松弛剂引发的遗传性神经肌肉疾病,似乎是由于细胞内Ca2 +稳态的改变所致。 MH在20,000例麻醉的成年人中有1例发生,其特征是代谢亢进,骨骼肌僵硬和体温升高,这通常是致命的[MacLennan和Phillips(1992)Science 256,789-794]。导致疾病的缺陷可能在于通过RYanodine-receptor(RYR)Ca2 +通道控制Ca2 +从肌质网中释放的机制。实际上,在某些人类家庭以及对MH敏感的猪中,RYR中的点突变与MH有关。然而,迄今为止,尚未获得直接证据表明该点突变是引起RYR介导的Ca 2+释放功能改变的必要和充分条件。在本报告中,我们显示了在COS-7转染的细胞中表达的重组RYR中Arg-to-Cys点突变的存在会引起异常的胞质Ca2 +瞬变,以响应4-氯-间-甲酚(一种能够引发的作用) MH敏感肌肉的体外挛缩。

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