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PNAS Plus: Leaky RyR2 channels unleash a brainstem spreading depolarization mechanism of sudden cardiac death

机译:PNAS Plus:泄漏的RyR2通道释放了突发性心脏死亡的脑干扩散去极化机制

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摘要

Cardiorespiratory failure is the most common cause of sudden unexplained death in epilepsy (SUDEP). Genetic autopsies have detected “leaky” gain-of-function mutations in the ryanodine receptor-2 (RyR2) gene in both SUDEP and sudden cardiac death cases linked to catecholaminergic polymorphic ventricular tachycardia that feature lethal cardiac arrhythmias without structural abnormality. Here we find that a human leaky RyR2 mutation, R176Q (RQ), alters neurotransmitter release probability in mice and significantly lowers the threshold for spreading depolarization (SD) in dorsal medulla, leading to cardiorespiratory collapse. Rare episodes of sinus bradycardia, spontaneous seizure, and sudden death were detected in RQ/+ mutant mice in vivo; however, when provoked, cortical seizures frequently led to apneas, brainstem SD, cardiorespiratory failure, and death. In vitro studies revealed that the RQ mutation selectively strengthened excitatory, but not inhibitory, synapses and facilitated SD in both the neocortex as well as brainstem dorsal medulla autonomic microcircuits. These data link defects in neuronal intracellular calcium homeostasis to the vulnerability of central autonomic brainstem pathways to hypoxic stress and implicate brainstem SD as a previously unrecognized site and mechanism contributing to premature death in individuals with leaky RYR2 mutations.
机译:心肺衰竭是癫痫猝死原因不明的最常见原因。遗传尸检已经在SUDEP和心脏骤停相关的儿茶酚胺能性多形性室性心动过速中,发现了ryanodine receptor-2(RyR2)基因的“泄漏”功能突变,该突变具有致命的心律失常而没有结构异常。在这里,我们发现人类漏泄的RyR2突变R176Q(RQ)改变了小鼠神经递质的释放概率,并显着降低了背髓质中去极化(SD)扩散的阈值,导致心肺衰竭。在体内RQ / +突变小鼠中发现了罕见的窦性心动过缓发作,自发性癫痫发作和猝死。然而,当激怒时,皮质癫痫发作通常会导致呼吸暂停,脑干SD,心肺衰竭和死亡。体外研究表明,RQ突变在新皮层以及脑干背髓自主神经微回路中选择性增强了兴奋性突触,但没有抑制突触,并促进了SD。这些数据将神经元细胞内钙稳态的缺陷与中央自主神经干通路对低氧应激的脆弱性联系起来,并暗示脑干SD是以前无法识别的部位和机制,导致具有泄漏性RYR2突变的个体过早死亡。

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