Strathclyde Institute of Pharmacy & Biomedical Sciences, University of Strathclyde, John Arbuthnott Building, 27 Taylor Street, Glasgow G40NR, UK.
Cell Calcium. 2009 Nov-Dec;46(5-6):313-22. doi: 10.1016/j.ceca.2009.09.001.
n vascular smooth muscle cells, Ca2+ release via IP(3) receptors (IP(3)R) and ryanodine receptors (RyR) on the sarcoplasmic reticulum (SR) Ca2+ store contributes significantly to the regulation of cellular events such as gene regulation, growth and contraction. Ca2+ release from various regions of a structurally compartmentalized SR, it is proposed, may selectively activate different cellular functions. Multiple SR compartments with various receptor arrangements are proposed also to exist at different stages of smooth muscle development and in proliferative vascular diseases such as atherosclerosis. The conclusions on SR organization have been derived largely from the outcome of functional studies. This study addresses whether the SR Ca2+ store is a single continuous interconnected network or multiple separate Ca2+ pools in single vascular myocytes. To do this, the consequences of depletion of the SR in small restricted regions on the Ca2+ available throughout the store was examined using localized photolysis of caged-IP3 and focal application of ryanodine in guinea-pig voltage-clamped single portal vein myocytes. From one small site on the cell, the entire SR could be depleted via either RyR or IP(3)R. The entire SR could also be refilled from one small site on the cell. The results suggest a single luminally continuous SR exists. However, the opening of IP(3)R and RyR was regulated by the Ca2+ concentration within the SR (luminal [Ca2+]). As the luminal [Ca2+] declines, the opening of the receptors decline and stop, and there may appear to be stores with either only RyR or only IP(3)R. The SR Ca2+ store is a single luminally continuous entity which contains both IP(3)R and RyR and within which Ca2+ is accessed freely by each receptor. While the SR is a single continuous entity, regulation of IP3R and RyR by luminal [Ca2+] explains the appearance of multiple stores in some functional studies.
在血管平滑肌细胞中,细胞内钙离子通过肌浆网(SR)钙离子储存库上的 IP3 受体(IP3R)和兰尼碱受体(RyR)的释放,对基因调控、生长和收缩等细胞事件的调节起着重要作用。据推测,来自 SR 结构分隔区的钙离子释放可能选择性地激活不同的细胞功能。在平滑肌发育的不同阶段和动脉粥样硬化等增殖性血管疾病中,也存在具有不同受体排列的多个 SR 隔室。SR 组织的结论主要来自功能研究的结果。本研究旨在探讨 SR 钙离子储存库是单一连续的相互连接的网络,还是单个血管平滑肌细胞中多个独立的钙离子池。为了做到这一点,通过在豚鼠电压钳制的单个门静脉平滑肌细胞中局部光解笼状 IP3 和焦域应用兰尼碱,研究了局部 SR 耗竭对整个储存库中钙离子的影响。通过细胞上的一个小区域,可以通过 RyR 或 IP3R 耗尽整个 SR。整个 SR 也可以从细胞上的一个小区域重新填充。结果表明,存在一个单一的腔连续 SR。然而,IP3R 和 RyR 的开放受到 SR 内钙离子浓度(腔内[Ca2+])的调节。随着腔内[Ca2+]的下降,受体的开放减少并停止,可能会出现只有 RyR 或只有 IP3R 的储存库。SR 钙离子储存库是一个单一的腔连续实体,包含 IP3R 和 RyR,并且每个受体都可以自由地进入钙离子。虽然 SR 是一个单一的连续实体,但 IP3R 和 RyR 对腔内[Ca2+]的调节可以解释在一些功能研究中出现的多个储存库。