Yamazaki Daiju, Yamazaki Tetsuo, Takeshima Hiroshi
Department of Biological Chemistry, Graduate School of Pharmaceutical Sciences, Kyoto University, Kyoto 606-8501, Japan.
Pharmacol Ther. 2009 Mar;121(3):265-72. doi: 10.1016/j.pharmthera.2008.11.004. Epub 2008 Dec 3.
Ca(2+) mobilization from intracellular stores is mediated by Ca(2+) release channels, designated ryanodine and IP(3) receptors, and directly regulates important cellular reactions including muscle contraction, endo/exocrine secretion, and neural excitability. In order to function as an intracellular store, the endo/sarcoplasmic reticulum is equipped with cooperative Ca(2+) uptake, storage and release machineries, comprising synergic collaborations among integral-membrane, cytoplasmic and luminal proteins. Our recent studies have demonstrated that junctophilins form junctional membrane complexes between the plasma membrane and the endo/sarcoplasmic reticulum in excitable cells, and that TRIC (trimeric intracellular cation) channels act as novel monovalent cation-specific channels on intracellular membrane systems. Knockout mice have provided evidence that both junctophilins and TRIC channels support efficient ryanodine receptor-mediated Ca(2+) release in muscle cells. This review focuses on cardiac Ca(2+) release by discussing pathological defects of mutant cardiomyocytes lacking ryanodine receptors, junctophilins, or TRIC channels.
细胞内钙库的钙离子动员由名为兰尼碱受体和肌醇三磷酸受体的钙离子释放通道介导,并直接调节包括肌肉收缩、内分泌/外分泌分泌以及神经兴奋性在内的重要细胞反应。为了作为细胞内钙库发挥作用,内质网/肌浆网配备了协同的钙离子摄取、储存和释放机制,这些机制包括整合膜蛋白、细胞质蛋白和内质网腔蛋白之间的协同合作。我们最近的研究表明,连接蛋白在可兴奋细胞的质膜和内质网/肌浆网之间形成连接膜复合物,并且三聚体细胞内阳离子通道(TRIC)在细胞内膜系统上作为新型单价阳离子特异性通道发挥作用。基因敲除小鼠已经提供证据表明,连接蛋白和TRIC通道都支持肌肉细胞中兰尼碱受体介导的高效钙离子释放。本综述通过讨论缺乏兰尼碱受体、连接蛋白或TRIC通道的突变心肌细胞的病理缺陷,重点关注心脏钙离子释放。