Schaub Marcus C, Hefti Martin A, Zaugg Michael
Institute of Pharmacology and Toxicology, University of Zurich, Switzerland.
J Mol Cell Cardiol. 2006 Aug;41(2):183-214. doi: 10.1016/j.yjmcc.2006.04.005. Epub 2006 Jun 12.
Calcium has evolved as global intracellular messenger for signal transduction in the millisecond time range by reversibly binding to calcium-sensing proteins. In the cardiomyocyte, ion pumps, ion exchangers and channels keep the cytoplasmic calcium level at rest around approximately 100 nM which is more than 10,000-fold lower than outside the cell. Intracellularly, calcium is mainly stored in the sarcoplasmic reticulum, which comprises the bulk of calcium available for the heartbeat. Regulation of cardiac function including contractility and energy production relies on a three-tiered control system, (i) immediate and fast feedback in response to mechanical load on a beat-to-beat basis (Frank-Starling relation), (ii) more sustained regulation involving transmitters and hormones as primary messengers, and (iii) long-term adaptation by changes in the gene expression profile. Calcium signaling over largely different time scales requires its integration with the protein kinase signaling network which is governed by G-protein-coupled receptors, growth factor and cytokine receptors at the surface membrane. Short-term regulation is dominated by the beta-adrenergic system, while long-term regulation with phenotypic remodeling depends on sustained signaling by growth factors, cytokines and calcium. Mechanisms and new developments in intracellular calcium handling and its interrelation with the MAPK signaling pathways are discussed in detail.
钙已演变为在毫秒时间范围内进行信号转导的全球细胞内信使,通过与钙传感蛋白可逆结合来实现。在心肌细胞中,离子泵、离子交换器和通道使静息时的细胞质钙水平保持在约100 nM左右,这比细胞外低一万多倍。在细胞内,钙主要储存在肌浆网中,肌浆网包含了心跳所需的大部分钙。心脏功能的调节,包括收缩性和能量产生,依赖于一个三层控制系统:(i) 对逐搏机械负荷的即时快速反馈(弗兰克-斯塔林关系);(ii) 涉及递质和激素作为主要信使的更持续调节;(iii) 通过基因表达谱变化的长期适应。在很大不同时间尺度上的钙信号传导需要其与蛋白激酶信号网络整合,该网络由表面膜上的G蛋白偶联受体、生长因子和细胞因子受体控制。短期调节主要由β-肾上腺素能系统主导,而具有表型重塑的长期调节则取决于生长因子、细胞因子和钙的持续信号传导。本文将详细讨论细胞内钙处理的机制和新进展及其与MAPK信号通路的相互关系。