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在 CASQ2 缺失背景下稳定表达突变型钙网蛋白(CASQ2D307H)的功能后果。

Functional consequences of stably expressing a mutant calsequestrin (CASQ2D307H) in the CASQ2 null background.

机构信息

Department of Physiology and Cell Biology, The Ohio State University College of Medicine, Columbus, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2012 Jan 1;302(1):H253-61. doi: 10.1152/ajpheart.00578.2011. Epub 2011 Oct 7.

Abstract

The role of calsequestrin (CASQ2) in cardiac sarcoplasmic reticulum (SR) calcium (Ca(2+)) transport has gained significant attention since point mutations in CASQ2 were reported to cause ventricular arrhythmia. In the present study, we have critically evaluated the functional consequences of expressing the CASQ2(D307H) mutant protein in the CASQ2 null mouse. We recently reported that the mutant CASQ2(D307H) protein can be stably expressed in CASQ2 null hearts, and it targets appropriately to the junctional SR (Kalyanasundaram A, Bal NC, Franzini-Armstrong C, Knollmann BC, Periasamy M. J Biol Chem 285: 3076-3083, 2010). In this study, we found that introduction of CASQ2(D307H) protein in the CASQ2 null background partially restored triadin 1 levels, which were decreased in the CASQ2 null mice. Despite twofold expression (relative to wild-type CASQ2), the mutant protein failed to increase SR Ca(2+) load. We also found that the Ca(2+) transient decays slower in the CASQ2 null and CASQ2(D307H) cells. CASQ2(D307H) myocytes, when rhythmically paced and challenged with isoproterenol, exhibit spontaneous Ca(2+) waves similar to CASQ2 null myocytes; however, the stability of Ca(2+) cycling was increased in the CASQ2(D307H) myocytes. In the presence of isoproterenol, Ca(2+)-transient amplitude in CASQ2(D307H) myocytes was significantly decreased, possibly indicating an inherent defect in Ca(2+) buffering capacity and release from the mutant CASQ2 at high Ca(2+) concentrations. We also observed polymorphic ventricular tachycardia in the CASQ2(D307H) mice, although lesser than in the CASQ2 null mice. These data suggest that CASQ2(D307H) point mutation may affect Ca(2+) buffering capacity and Ca(2+) release. We propose that poor interaction between CASQ2(D307H) and triadin 1 could affect ryanodine receptor 2 stability, thereby increasing susceptibility to delayed afterdepolarizations and triggered arrhythmic activity.

摘要

钙结合蛋白 2(CASQ2)在心肌肌浆网(SR)钙(Ca(2+))转运中的作用引起了广泛关注,因为 CASQ2 中的点突变已被报道可导致室性心律失常。在本研究中,我们批判性地评估了在 CASQ2 缺失的小鼠中表达 CASQ2(D307H)突变蛋白的功能后果。我们最近报道,突变的 CASQ2(D307H)蛋白可以在 CASQ2 缺失的心脏中稳定表达,并且它适当地靶向连接 SR(Kalyanasundaram A,Bal NC,Franzini-Armstrong C,Knollmann BC,Periasamy M. J Biol Chem 285:3076-3083,2010)。在这项研究中,我们发现,在 CASQ2 缺失的背景下引入 CASQ2(D307H)蛋白部分恢复了在 CASQ2 缺失的小鼠中降低的三肽 1 水平。尽管表达量增加了两倍(相对于野生型 CASQ2),但突变蛋白未能增加 SR Ca(2+)负荷。我们还发现,在 CASQ2 缺失和 CASQ2(D307H)细胞中,Ca(2+)瞬变衰减更慢。在节律起搏并用异丙肾上腺素刺激时,CASQ2(D307H)心肌细胞表现出类似于 CASQ2 缺失心肌细胞的自发性 Ca(2+)波;然而,在 CASQ2(D307H)心肌细胞中,Ca(2+)循环的稳定性增加。在异丙肾上腺素存在下,CASQ2(D307H)心肌细胞的 Ca(2+)瞬变幅度显著降低,这可能表明在高 Ca(2+)浓度下,突变的 CASQ2 从 Ca(2+)缓冲能力和释放中存在固有缺陷。我们还观察到 CASQ2(D307H)小鼠出现多形性室性心动过速,尽管比 CASQ2 缺失的小鼠少。这些数据表明,CASQ2(D307H)点突变可能影响 Ca(2+)缓冲能力和 Ca(2+)释放。我们提出,CASQ2(D307H)与三肽 1 之间的相互作用不良可能会影响ryanodine 受体 2 的稳定性,从而增加延迟后去极化和触发心律失常活动的易感性。

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