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心肌细胞中腔内钙和肌集钙蛋白对肌浆网钙释放的调节作用:与心源性猝死相关的CASQ2突变的影响

Modulation of SR Ca release by luminal Ca and calsequestrin in cardiac myocytes: effects of CASQ2 mutations linked to sudden cardiac death.

作者信息

Terentyev Dmitry, Kubalova Zuzana, Valle Giorgia, Nori Alessandra, Vedamoorthyrao Srikanth, Terentyeva Radmila, Viatchenko-Karpinski Serge, Bers Donald M, Williams Simon C, Volpe Pompeo, Gyorke Sandor

机构信息

Department of Physiology, Dorothy M. Davis Heart and Lung Research Institute, The Ohio State University Medical Center, Columbus, Ohio 43210-1252, USA.

出版信息

Biophys J. 2008 Aug;95(4):2037-48. doi: 10.1529/biophysj.107.128249. Epub 2008 May 9.

Abstract

Cardiac calsequestrin (CASQ2) is an intrasarcoplasmic reticulum (SR) low-affinity Ca-binding protein, with mutations that are associated with catecholamine-induced polymorphic ventricular tachycardia (CPVT). To better understand how CASQ2 mutants cause CPVT, we expressed two CPVT-linked CASQ2 mutants, a truncated protein (at G112+5X, CASQ2(DEL)) or CASQ2 containing a point mutation (CASQ2(R33Q)), in canine ventricular myocytes and assessed their effects on Ca handling. We also measured CASQ2-CASQ2 variant interactions using fluorescence resonance transfer in a heterologous expression system, and evaluated CASQ2 interaction with triadin. We found that expression of CASQ2(DEL) or CASQ2(R33Q) altered myocyte Ca signaling through two different mechanisms. Overexpressing CASQ2(DEL) disrupted the CASQ2 polymerization required for high capacity Ca binding, whereas CASQ2(R33Q) compromised the ability of CASQ2 to control ryanodine receptor (RyR2) channel activity. Despite profound differences in SR Ca buffering strengths, local Ca release terminated at the same free luminal [Ca] in control cells, cells overexpressing wild-type CASQ2 and CASQ2(DEL)-expressing myocytes, suggesting that a decline in Ca is a signal for RyR2 closure. Importantly, disrupting interactions between the RyR2 channel and CASQ2 by expressing CASQ2(R33Q) markedly lowered the Ca threshold for Ca release termination. We conclude that CASQ2 in the SR determines the magnitude and duration of Ca release from each SR terminal by providing both a local source of releasable Ca and by effects on luminal Ca-dependent RyR2 gating. Furthermore, two CPVT-inducing CASQ2 mutations, which cause mechanistically different defects in CASQ2 and RyR2 function, lead to increased diastolic SR Ca release events and exhibit a similar CPVT disease phenotype.

摘要

心肌钙结合蛋白(CASQ2)是一种肌浆网(SR)内的低亲和力钙结合蛋白,其突变与儿茶酚胺诱导的多形性室性心动过速(CPVT)相关。为了更好地理解CASQ2突变体如何导致CPVT,我们在犬心室肌细胞中表达了两种与CPVT相关的CASQ2突变体,一种截短蛋白(在G112 + 5X处,CASQ2(DEL))或含有点突变的CASQ2(CASQ2(R33Q)),并评估它们对钙处理的影响。我们还在异源表达系统中使用荧光共振转移测量了CASQ2 - CASQ2变体相互作用,并评估了CASQ2与三联蛋白的相互作用。我们发现,CASQ2(DEL)或CASQ2(R33Q)的表达通过两种不同机制改变了心肌细胞钙信号。过表达CASQ2(DEL)破坏了高容量钙结合所需的CASQ2聚合,而CASQ2(R33Q)损害了CASQ2控制兰尼碱受体(RyR2)通道活性的能力。尽管肌浆网钙缓冲强度存在显著差异,但在对照细胞、过表达野生型CASQ2的细胞和表达CASQ2(DEL)的心肌细胞中,局部钙释放均在相同的游离管腔[Ca]时终止,这表明Ca的下降是RyR2关闭的信号。重要的是,通过表达CASQ2(R33Q)破坏RyR2通道与CASQ2之间的相互作用,显著降低了钙释放终止的Ca阈值。我们得出结论,肌浆网中的CASQ2通过提供可释放钙的局部来源以及对管腔钙依赖性RyR2门控的影响,决定了每个肌浆网末端钙释放的幅度和持续时间。此外,两种导致CPVT的CASQ2突变在CASQ2和RyR2功能上引起机制不同的缺陷,导致舒张期肌浆网钙释放事件增加,并表现出相似的CPVT疾病表型。

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