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Phospholamban knockout breaks arrhythmogenic Ca2+ waves and suppresses catecholaminergic polymorphic ventricular tachycardia in mice

机译:phospholamban敲除打破致心律失常的Ca2 +波并抑制小鼠儿茶酚胺能多形性室性心动过速

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摘要

Rationale: Phospholamban (PLN) is an inhibitor of cardiac sarco(endo)plasmic reticulum Ca2+ ATPase. PLN knockout (PLN-KO) enhances sarcoplasmic reticulum Ca2+ load and Ca2+ leak. Conversely, PLN-KO accelerates Ca2+ sequestration and aborts arrhythmogenic spontaneous Ca2+ waves (SCWs). An important question is whether these seemingly paradoxical effects of PLN-KO exacerbate or protect against Ca2+-triggered arrhythmias.\udObjective: We investigate the impact of PLN-KO on SCWs, triggered activities, and stress-induced ventricular tachyarrhythmias (VTs) in a mouse model of cardiac ryanodine-receptor (RyR2)-linked catecholaminergic polymorphic VT.\udMethods and Results: We generated a PLN-deficient, RyR2-mutant mouse model (PLN−/−/RyR2-R4496C+/−) by crossbreeding PLN-KO mice with catecholaminergic polymorphic VT–associated RyR2-R4496C mutant mice. Ca2+ imaging and patch-clamp recording revealed cell-wide propagating SCWs and triggered activities in RyR2-R4496C+/− ventricular myocytes during sarcoplasmic reticulum Ca2+ overload. PLN-KO fragmented these cell-wide SCWs into mini-waves and Ca2+ sparks and suppressed the triggered activities evoked by sarcoplasmic reticulum Ca2+ overload. Importantly, these effects of PLN-KO were reverted by partially inhibiting sarco(endo)plasmic reticulum Ca2+ ATPase with 2,5-di-tert-butylhydroquinone. However, Bay K, caffeine, or Li+ failed to convert mini-waves to cell-wide SCWs in PLN−/−/RyR2-R4496C+/− ventricular myocytes. Furthermore, ECG analysis showed that PLN-KO mice are not susceptible to stress-induced VTs. On the contrary, PLN-KO protected RyR2-R4496C mutant mice from stress-induced VTs.\udConclusions: Our results demonstrate that despite severe sarcoplasmic reticulum Ca2+ leak, PLN-KO suppresses triggered activities and stress-induced VTs in a mouse model of catecholaminergic polymorphic VT. These data suggest that breaking up cell-wide propagating SCWs by enhancing Ca2+ sequestration represents an effective approach for suppressing Ca2+-triggered arrhythmias.
机译:原理:磷酰苯丙胺(PLN)是心脏肌(内)质网Ca2 + ATPase的抑制剂。 PLN剔除(PLN-KO)可增强肌浆网Ca2 +负荷和Ca2 +泄漏。相反,PLN-KO加速了Ca2 +的螯合并中止了致心律失常的自发Ca2 +波(SCW)。一个重要的问题是PLN-KO的这些看似矛盾的作用是否加剧或保护了Ca2 +触发的心律失常。\ ud目的:我们研究PLN-KO对SCW,触发活动和应激性心室快速性心律失常(VT)的影响。 ryanadine-receptor(RyR2)-联的儿茶酚胺能多态性VT的小鼠模型儿茶酚胺能多形性VT相关的RyR2-R4496C突变小鼠。 Ca2 +成像和膜片钳记录显示了在肌质网Ca2 +超负荷期间RyR2-R4496C +/-心室肌细胞中全细胞内传播的SCW和触发的活性。 PLN-KO将这些细胞范围内的SCW碎裂成小波和Ca2 +火花,并抑制了肌浆网Ca2 +超负荷引起的触发活动。重要的是,PLN-KO的这些作用通过用2,5-二叔丁基对苯二酚部分抑制肌(内)质网Ca2 + ATPase得以恢复。但是,Bay K,咖啡因或Li +无法将小波转换为PLN-/-/ RyR2-R4496C +/-心室肌细胞中的全细胞SCW。此外,心电图分析表明PLN-KO小鼠不易受应激诱导的室速。相反,PLN-KO保护RyR2-R4496C突变小鼠免受应激诱导的VT。多态VT。这些数据表明,通过增强Ca2 +的螯合作用来分解在整个细胞内传播的SCW,代表了一种抑制Ca2 +触发的心律不齐的有效方法。

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