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RyR1 S-nitrosylation underlies environmental heat stroke and sudden death in Y522S RyR1 knockin mice

机译:RyR1 S亚硝基化是Y522S RyR1敲入小鼠的环境中暑和猝死的基础

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摘要

Mice with a malignant hyperthermia mutation (Y522S) in the ryanodine receptor (RyR1) display muscle contractures, rhabdomyolysis, and death in response to elevated environmental temperatures. We demonstrate that this mutation in RyR1 causes Ca2+ leak, which drives increased generation of reactive nitrogen species (RNS). Subsequent S-nitrosylation of the mutant RyR1 increases its temperature sensitivity for activation, producing muscle contractures upon exposure to elevated temperatures. The Y522S mutation in humans is associated with central core disease. Many mitochondria in the muscle of heterozygous Y522S mice are swollen and misshapen. The mutant muscle displays decreased force production and increased mitochondrial lipid peroxidation with aging. Chronic treatment with N-acetylcysteine protects against mitochondrial oxidative damage and the decline in force generation. We propose a feed-forward cyclic mechanism that increases the temperature sensitivity of RyR1 activation and underlies heat stroke and sudden death. The cycle eventually produces a myopathy with damaged mitochondria.
机译:ryanodine受体(RyR1)中具有恶性高热突变(Y522S)的小鼠表现出肌肉挛缩,横纹肌溶解和对环境温度升高的反应而死亡。我们证明RyR1中的这种突变会导致Ca2 +泄漏,从而驱动增加的活性氮物质(RNS)的产生。突变体RyR1的随后S-亚硝基化会增加其对激活的温度敏感性,暴露于高温下会产生肌肉挛缩。人类的Y522S突变与中枢核心疾病有关。 Y522S杂合子小鼠肌肉中的许多线粒体肿胀且畸形。随着年龄的增长,突变的肌肉显示出降低的力产生和增加的线粒体脂质过氧化作用。长期使用N-乙酰半胱氨酸进行治疗可防止线粒体氧化损伤和力量降低。我们提出了一种前馈循环机制,该机制提高了RyR1激活的温度敏感性,并导致中暑和猝死。该循环最终产生线粒体受损的肌病。

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