Cioffi Donna L, Wu Songwei, Stevens Troy
Department of Pharmacology, Center for Lung Biology, University of South Alabama College of Medicine, Mobile, AL 36688, USA.
Cell Calcium. 2003 May-Jun;33(5-6):323-36. doi: 10.1016/s0143-4160(03)00046-0.
Ca2+ store depletion activates both Ca2+ selective and non-selective currents in endothelial cells. Recently, considerable progress has been made in understanding the molecular make-up and regulation of an endothelial cell thapsigargin-activated Ca2+ selective current, I(SOC). Indeed, I(SOC) is a relatively small inward Ca2+ current that exhibits an approximate +40mV reversal potential and is strongly inwardly rectifying. This current is sensitive to organization of the actin-based cytoskeleton. Transient receptor potential (TRP) proteins 1 and 4 (TRPC1 and TRPC4, respectively) each contribute to the molecular basis of I(SOC), although it is TRPC4 that appears to be tethered to the cytoskeleton through a dynamic interaction with protein 4.1. Activation of I(SOC) requires association between protein 4.1 and the actin-based cytoskeleton (mediated through spectrin), suggesting protein 4.1 mediates the physical communication between Ca2+ store depletion and channel activation. Thus, at present findings indicate a TRPC4-protein 4.1 physical linkage regulates I(SOC) activation following Ca2+ store depletion.
内质网钙库耗竭可激活内皮细胞中的钙选择性电流和非选择性电流。最近,在了解内皮细胞毒胡萝卜素激活的钙选择性电流I(SOC)的分子组成和调控方面取得了相当大的进展。实际上,I(SOC)是一种相对较小的内向钙电流,其反转电位约为+40mV,并且具有强烈的内向整流特性。该电流对基于肌动蛋白的细胞骨架的组织敏感。瞬时受体电位(TRP)蛋白1和4(分别为TRPC1和TRPC4)均对I(SOC)的分子基础有贡献,尽管似乎是TRPC4通过与蛋白4.1的动态相互作用与细胞骨架相连。I(SOC)的激活需要蛋白4.1与基于肌动蛋白的细胞骨架之间的结合(通过血影蛋白介导),这表明蛋白4.1介导了内质网钙库耗竭与通道激活之间的物理联系。因此,目前的研究结果表明,TRPC4-蛋白4.1的物理连接调节内质网钙库耗竭后的I(SOC)激活。