Chakrabarti Ranjana, Chakrabarti Rabindranath
Department of Laboratory Medicine, St. Michael's Hospital, 30 Bond Street, Toronto, Ontario, Canada M6N 4C5.
J Cell Biochem. 2006 Dec 15;99(6):1503-16. doi: 10.1002/jcb.21102.
The regulatory mechanism of Ca2+ influx into the cytosol from the extracellular space in non-excitable cells is not clear. The "capacitative calcium entry" (CCE) hypothesis suggested that Ca2+ influx is triggered by the IP(3)-mediated emptying of the intracellular Ca2+ stores. However, there is no clear evidence for CCE and its mechanism remains elusive. In the present work, we have provided the reported evidences to show that inhibition of IP(3)-dependent Ca2+ release does not affect Ca2+ influx, and the experimental protocols used to demonstrate CCE can stimulate Ca2+ influx by means other than emptying of the Ca2+ stores. In addition, we have presented the reports showing that IP(3)-mediated Ca2+ release is linked to a Ca2+ entry from the extracellular space, which does not increase cytosolic [Ca2+] prior to Ca2+ release. Based on these and other reports, we have provided a model of Ca2+ signaling in non-excitable cells, in which IP(3)-mediated emptying of the intracellular Ca2+ store triggers entry of Ca2+ directly into the store, through a plasma membrane TRPC channel. Thus, emptying and direct refilling of the Ca2+ stores are repeated in the presence of IP(3), giving rise to the transient phase of oscillatory Ca2+ release. Direct Ca2+ entry into the store is regulated by its filling status in a negative and positive manner through a Ca2+ -binding protein and Stim1/Orai complex, respectively. The sustained phase of Ca2+ influx is triggered by diacylglycerol (DAG) through the activation of another TRPC channel, independent of Ca2+ release. The plasma membrane IP(3) receptor (IP(3)R) plays an essential role in Ca2+ influx, by interacting with the DAG-activated TRPC, without the requirement of binding to IP(3).
非兴奋性细胞中钙离子从细胞外空间流入胞质溶胶的调节机制尚不清楚。“容量性钙内流”(CCE)假说认为,钙离子内流是由IP(3)介导的细胞内钙库排空所触发的。然而,目前尚无明确证据支持CCE,其机制仍不清楚。在本研究中,我们提供了已报道的证据表明,抑制IP(3)依赖的钙释放并不影响钙离子内流,且用于证明CCE的实验方案可通过钙库排空以外的其他方式刺激钙离子内流。此外,我们还展示了一些报告,表明IP(3)介导的钙释放与细胞外空间的钙离子内流相关,而在钙释放之前,这种内流并不会增加胞质[Ca2+]。基于这些及其他报告,我们提出了一个非兴奋性细胞中钙信号传导的模型,其中IP(3)介导的细胞内钙库排空通过质膜TRPC通道直接触发钙离子进入钙库。因此,在IP(3)存在的情况下,钙库的排空和直接再填充会反复进行,从而产生振荡性钙释放的瞬态阶段。钙离子直接进入钙库分别通过一种钙结合蛋白和Stim1/Orai复合体以负向和正向方式受其填充状态调节。钙离子内流的持续阶段由二酰基甘油(DAG)通过激活另一个TRPC通道触发,与钙释放无关。质膜IP(3)受体(IP(3)R)通过与DAG激活的TRPC相互作用,在钙离子内流中发挥重要作用,而无需与IP(3)结合。