Cardiomyocyte-Specific STIM1 (Stromal Interaction Molecule 1) Depletion in the Adult Heart Promotes the Development of Arrhythmogenic Discordant Alternans.

Marine Cacheux, Benjamin Strauss, Nour Raad, Zeki Ilkan, Jun Hu, Ludovic Benard, Stefan Feske, Jean-Sebastien Hulot, Fadi G Akar
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Abstract

Background: STIM1 (stromal interaction molecule 1) is a calcium (Ca2+) sensor that regulates cardiac hypertrophy by triggering store-operated Ca2+ entry. Because STIM1 binding to phospholamban increases sarcoplasmic reticulum Ca2+ load independent of store-operated Ca2+ entry, we hypothesized that it controls electrophysiological function and arrhythmias in the adult heart.

Methods: Inducible myocyte-restricted STIM1-KD (STIM1 knockdown) was achieved in adult mice using an αMHC (α-myosin heavy chain)-MerCreMer system. Mechanical and electrophysiological properties were examined using echocardiography in vivo and optical action potential (AP) mapping ex vivo in tamoxifen-induced STIM1flox/flox-Cretg/- (STIM1-KD) and littermate controls for STIM1flox/flox (referred to as STIM1-Ctl) and for Cretg/- without STIM deletion (referred to as Cre-Ctl).

Results: STIM1-KD mice (N=23) exhibited poor survival compared with STIM1-Ctl (N=22) and Cre-Ctl (N=11) with >50% mortality after only 8-days of cardiomyocyte-restricted STIM1-KD. STIM1-KD but not STIM1-Ctl or Cre-Ctl hearts exhibited a proclivity for arrhythmic behavior, ranging from frequent ectopy to pacing-induced ventricular tachycardia/ventricular fibrillation (VT/VF). Examination of the electrophysiological substrate revealed decreased conduction velocity and increased AP duration (APD) heterogeneity in STIM1-KD. These features, however, were comparable in VT/VF(+) and VT/VF(-) hearts. We also uncovered a marked increase in the magnitude of APD alternans during rapid pacing, and the emergence of a spatially discordant alternans profile in STIM1-KD hearts. Unlike conduction velocity slowing and APD heterogeneity, the magnitude of APD alternans was greater (by 80%, P<0.05) in VT/VF(+) versus VT/VF(-) STIM1-KD hearts. Detailed phase mapping during the initial beats of VT/VF identified one or more rotors that were localized along the nodal line separating out-of-phase alternans regions.

Conclusions: In an adult murine model with inducible and myocyte-specific STIM1 depletion, we demonstrate for the first time the regulation of spatially discordant alternans by STIM1. Early mortality in STIM1-KD mice is likely related to enhanced susceptibility to VT/VF secondary to discordant APD alternans.

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成人心脏中心肌细胞特异性STIM1(基质相互作用分子1)耗竭促进心律失常不协调交替的发展。
背景:STIM1(基质相互作用分子1)是一种钙(Ca2+)传感器,通过触发储存操作的Ca2+进入来调节心脏肥厚。由于STIM1结合磷蛋白增加肌浆网Ca2+负荷独立于存储操作的Ca2+进入,我们假设它控制成人心脏的电生理功能和心律失常。方法:采用α- mhc (α-肌球蛋白重链)-MerCreMer体系,在成年小鼠中诱导肌细胞限制性STIM1- kd (STIM1敲低)。在他莫昔酚诱导的STIM1flox/flox-Cretg/- (STIM1-KD)和同窝对照的STIM1flox/flox (STIM1-Ctl)和没有STIM缺失的Cretg/- (Cre-Ctl)中,采用超声心动图和体外光学动作电位(AP)作图检测机械和电生理特性。结果:与STIM1-Ctl (N=22)和Cre-Ctl (N=11)相比,STIM1-KD小鼠(N=23)的存活率较低,心肌细胞限制性STIM1-KD仅8天后死亡率为50%。STIM1-KD而不是STIM1-Ctl或Cre-Ctl心脏表现出心律失常行为的倾向,从频繁异位到起搏引起的室性心动过速/心室颤动(VT/VF)。电生理底物检测显示STIM1-KD传导速度降低,AP持续时间(APD)异质性增加。然而,这些特征在VT/VF(+)和VT/VF(-)心脏中具有可比性。我们还发现,在快速起搏期间APD交替的幅度显著增加,并且在STIM1-KD心脏中出现空间不一致的交替谱。与传导速度减慢和APD异质性不同,APD交替的幅度更大(80%)。结论:在诱导和肌细胞特异性STIM1缺失的成年小鼠模型中,我们首次证明了STIM1对空间不协调交替的调节。STIM1-KD小鼠的早期死亡可能与继发于不一致APD交替的VT/VF易感性增强有关。
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