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首页> 外文期刊>The Journal of Physiology >Phospholamban ablation rescues the enhanced propensity to arrhythmias of mice with CaMKII-constitutive phosphorylation of RyR2 at site S2814
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Phospholamban ablation rescues the enhanced propensity to arrhythmias of mice with CaMKII-constitutive phosphorylation of RyR2 at site S2814

机译:磷酸磷脂酰消除可以在部位S2814处通过CaMKII组成型RyR2磷酸化来挽救小鼠心律失常的增强倾向

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摘要

Mice with constitutive pseudo-phosphorylation at Ser2814-RyR2 (S2814D(+/+)) have increased propensity to arrhythmias under beta-adrenergic stress conditions. Although abnormal Ca2+ release from the sarcoplasmic reticulum (SR) has been linked to arrhythmogenesis, the role played by SR Ca2+ uptake remains controversial. We tested the hypothesis that an increase in SR Ca2+ uptake is able to rescue the increased arrhythmia propensity of S2814D(+/+) mice. We generated phospholamban (PLN)-deficient/S2814D(+/+) knock-in mice by crossing two colonies, S2814D(+/+) and PLNKO mice (SD+/+/KO). SD+/+/KO myocytes exhibited both increased SR Ca2+ uptake seen in PLN knock-out (PLNKO) myocytes and diminished SR Ca2+ load (relative to PLNKO), a characteristic of S2814D(+/+) myocytes. Ventricular arrhythmias evoked by catecholaminergic challenge (caffeine/adrenaline) in S2814D(+/+) mice in vivo or programmed electric stimulation and high extracellular Ca2+ in S2814D(+/-) hearts ex vivo were significantly diminished by PLN ablation. At the myocyte level, PLN ablation converted the arrhythmogenic Ca2+ waves evoked by high extracellular Ca2+ provocation in S2814D(+/+) mice into non-propagated Ca2+ mini-waves on confocal microscopy. Myocyte Ca2+ waves, typical of S2814D(+/+) mice, could be evoked in SD+/+/KO cells by partially inhibiting SERCA2a. A mathematical human myocyte model replicated these results and allowed for predicting the increase in SR Ca2+ uptake required to prevent the arrhythmias induced by a Ca2+-calmodulin-dependent protein kinase (CaMKII)-dependent leaky RyR2. Our results demonstrate that increasing SR Ca2+ uptake by PLN ablation can prevent the arrhythmic events triggered by SR Ca2+ leak due to CaMKII-dependent phosphorylation of the RyR2-S2814 site underscore the benefits of increasing SERCA2a activity on SR Ca2+-triggered arrhythmias.
机译:在Ser2814-RyR2(S2814D(+ / +))上具有本构性伪磷酸化的小鼠在β-肾上腺素能应激条件下对心律不齐的倾向增加。尽管从肌浆网(SR)异常释放Ca2 +与心律失常有关,但SR Ca2 +摄取所起的作用仍存在争议。我们测试了一个假设,即SR Ca2 +摄取的增加能够挽救S2814D(+ / +)小鼠增加的心律失常倾向。通过交叉两个菌落,S2814D(+ / +)和PLNKO小鼠(SD + / + / KO),我们产生了磷酸lamban(PLN)缺陷/ S2814D(+ / +)敲入小鼠。 SD + / + / KO心肌细胞既表现出PLN敲除(PLNKO)心肌细胞增加的SR Ca2 +吸收,又表现出S2814D(+ / +)心肌细胞的SR Ca2 +负荷减少(相对于PLNKO)。体内儿茶酚胺能激发(咖啡因/肾上腺素)或程序性电刺激诱发的儿茶酚胺能激发(咖啡因/肾上腺素)引起的室性心律失常和PLN消融可显着减少S2814D(+/-)心脏的高细胞外Ca2 +。在心肌细胞水平,PLN消融将S2814D(+ / +)小鼠中高细胞外Ca2 +激发引起的致心律失常Ca2 +波转换为共聚焦显微镜下的非传播Ca2 +小波。通过部分抑制SERCA2a,可以在SD + / + / KO细胞中诱发S2814D(+ / +)小鼠典型的肌细胞Ca2 +波。数学上的人类心肌细胞模型复制了这些结果,并可以预测防止由Ca2 +-钙调蛋白依赖性蛋白激酶(CaMKII)依赖性渗漏RyR2诱导的心律不齐所需的SR Ca2 +吸收增加。我们的研究结果表明,通过PLN消融增加SR Ca2 +摄取可以防止由于CaMKII依赖性的RyR2-S2814位点磷酸化引起的SR Ca2 +泄漏触发的心律失常事件,突显了增加SERCA2a活性对SR Ca2 +触发的心律失常的益处。

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