Janssen Luke J
Asthma Research Group, Firestone Institute for Respiratory Health, St. Joseph's Hospital, McMaster University, Hamilton, Ontario, Canada L8N 4A6.
Am J Physiol Lung Cell Mol Physiol. 2002 Jun;282(6):L1161-78. doi: 10.1152/ajplung.00452.2001.
In general, excitation-contraction coupling in muscle is dependent on membrane depolarization and hyperpolarization to regulate the opening of voltage-dependent Ca(2+) channels and, thereby, influence intracellular Ca(2+) concentration (Ca(2+)). Thus Ca(2+) channel blockers and K(+) channel openers are important tools in the arsenals against hypertension, stroke, and myocardial infarction, etc. Airway smooth muscle (ASM) also exhibits robust Ca(2+), K(+), and Cl(-) currents, and there are elaborate signaling pathways that regulate them. It is easy, then, to presume that these also play a central role in contraction/relaxation of ASM. However, several lines of evidence speak to the contrary. Also, too many researchers in the ASM field view the sarcoplasmic reticulum as being centrally located and displacing its contents uniformly throughout the cell, and they have focused almost exclusively on the initial single [Ca(2+)] spike evoked by excitatory agonists. Several recent studies have revealed complex spatial and temporal heterogeneity in Ca(2+), the significance of which is only just beginning to be appreciated. In this review, we will compare what is known about ion channels in ASM with what is believed to be their roles in ASM physiology. Also, we will examine some novel ionic mechanisms in the context of Ca(2+) handling and excitation-contraction coupling in ASM.
一般来说,肌肉中的兴奋 - 收缩偶联依赖于膜去极化和超极化来调节电压依赖性Ca(2+)通道的开放,从而影响细胞内Ca(2+)浓度([Ca(2+)]i)。因此,Ca(2+)通道阻滞剂和K(+)通道开放剂是对抗高血压、中风和心肌梗死等疾病的重要工具。气道平滑肌(ASM)也表现出强大的Ca(2+)、K(+)和Cl(-)电流,并且存在精细的信号通路来调节它们。那么,很容易推测这些在ASM的收缩/舒张中也起着核心作用。然而,有几条证据表明情况恰恰相反。此外,ASM领域的许多研究人员认为肌浆网位于细胞中央并将其内容物均匀地分布在整个细胞中,并且他们几乎只关注兴奋性激动剂诱发的最初单个[Ca(2+)]峰值。最近的几项研究揭示了[Ca(2+)]i中复杂的空间和时间异质性,其重要性才刚刚开始被认识到。在这篇综述中,我们将比较关于ASM中离子通道的已知信息与其在ASM生理学中的作用。此外,我们将在ASM中Ca(2+)处理和兴奋 - 收缩偶联的背景下研究一些新的离子机制。