Jones L R, Suzuki Y J, Wang W, Kobayashi Y M, Ramesh V, Franzini-Armstrong C, Cleemann L, Morad M
Krannert Institute of Cardiology, Indiana University School of Medicine, Indianapolis, Indiana 46202, USA.
J Clin Invest. 1998 Apr 1;101(7):1385-93. doi: 10.1172/JCI1362.
To probe the physiological role of calsequestrin in excitation-contraction coupling, transgenic mice overexpressing cardiac calsequestrin were developed. Transgenic mice exhibited 10-fold higher levels of calsequestrin in myocardium and survived into adulthood, but had severe cardiac hypertrophy, with a twofold increase in heart mass and cell size. In whole cell-clamped transgenic myocytes, Ca2+ channel- gated Ca2+ release from the sarcoplasmic reticulum was strongly suppressed, the frequency of occurrence of spontaneous or Ca2+ current-triggered "Ca2+ sparks" was reduced, and the spark perimeter was less defined. In sharp contrast, caffeine-induced Ca2+ transients and the resultant Na+-Ca2+ exchanger currents were increased 10-fold in transgenic myocytes, directly implicating calsequestrin as the source of the contractile-dependent pool of Ca2+. Interestingly, the proteins involved in the Ca2+-release cascade (ryanodine receptor, junctin, and triadin) were downregulated, whereas Ca2+-uptake proteins (Ca2+-ATPase and phospholamban) were unchanged or slightly increased. The parallel increase in the pool of releasable Ca2+ with overexpression of calsequestrin and subsequent impairment of physiological Ca2+ release mechanism show for the first time that calsequestrin is both a storage and a regulatory protein in the cardiac muscle Ca2+-signaling cascade. Cardiac hypertrophy in these mice may provide a novel model to investigate the molecular determinants of heart failure.
为了探究肌集钙蛋白在兴奋 - 收缩偶联中的生理作用,制备了过表达心脏肌集钙蛋白的转基因小鼠。转基因小鼠心肌中的肌集钙蛋白水平高出10倍,且能存活至成年,但出现了严重的心脏肥大,心脏重量和细胞大小增加了两倍。在全细胞钳制的转基因心肌细胞中,肌浆网中钙通道门控的钙释放受到强烈抑制,自发或钙电流触发的“钙火花”出现频率降低,且火花边界不太清晰。与之形成鲜明对比的是,转基因心肌细胞中咖啡因诱导的钙瞬变以及由此产生的钠 - 钙交换电流增加了10倍,这直接表明肌集钙蛋白是收缩依赖性钙池的来源。有趣的是,参与钙释放级联反应的蛋白质(雷诺丁受体、连接蛋白和肌联蛋白)表达下调,而钙摄取蛋白(钙 - ATP酶和受磷蛋白)未发生变化或略有增加。随着肌集钙蛋白过表达,可释放钙池平行增加,随后生理钙释放机制受损,这首次表明肌集钙蛋白在心肌钙信号级联反应中既是一种储存蛋白也是一种调节蛋白。这些小鼠的心脏肥大可能为研究心力衰竭的分子决定因素提供一个新的模型。