Laboratory of Molecular and Cellular Signalling, K.U. Leuven, Campus Gasthuisberg O/N-1 bus 802, B-3000 Leuven, Belgium.
Cell Signal. 2011 Feb;23(2):305-16. doi: 10.1016/j.cellsig.2010.07.018. Epub 2010 Aug 3.
The pannexin (Panx) family of proteins, which is co-expressed with connexins (Cxs) in vertebrates, was found to be a new GJ-forming protein family related to invertebrate innexins. During the past ten years, different studies showed that Panxs mainly form hemichannels in the plasma membrane and mediate paracrine signalling by providing a flux pathway for ions such as Ca²(+), for ATP and perhaps for other compounds, in response to physiological and pathological stimuli. Although the physiological role of Panxs as a hemichannel was questioned, there is increasing evidence that Panx play a role in vasodilatation, initiation of inflammatory responses, ischemic death of neurons, epilepsy and in tumor suppression. Moreover, it is intriguing that Panxs may also function at the endoplasmic reticulum (ER) as intracellular Ca²(+)-leak channel and may be involved in ER-related functions. Although the physiological significance and meaning of such Panx-regulated intracellular Ca²(+) leak requires further exploration, this functional property places Panx at the centre of many physiological and pathophysiological processes, given the fundamental role of intracellular Ca²(+) homeostasis and dynamics in a plethora of physiological processes. In this review, we therefore want to focus on Panx as channels at the plasma membrane and at the ER membranes with a particular emphasis on the potential implications of the latter in intracellular Ca²(+) signalling.
潘尼xin(Panx)蛋白家族与脊椎动物中的连接蛋白(Cxs)共同表达,被发现是一种与无脊椎动物连接蛋白相关的新的缝隙连接形成蛋白家族。在过去的十年中,不同的研究表明,Panx 主要在质膜中形成半通道,并通过提供 Ca²(+)、ATP 等离子以及其他化合物的流路来介导旁分泌信号,以响应生理和病理刺激。尽管 Panx 作为半通道的生理作用受到质疑,但越来越多的证据表明 Panx 在血管舒张、炎症反应的启动、神经元的缺血性死亡、癫痫发作和肿瘤抑制中发挥作用。此外,有趣的是,Panx 也可能在内质网(ER)中作为细胞内 Ca²(+)泄漏通道发挥作用,并可能参与 ER 相关功能。尽管这种 Panx 调节的细胞内 Ca²(+)泄漏的生理意义和意义需要进一步探索,但这种功能特性使 Panx 成为许多生理和病理生理过程的中心,因为细胞内 Ca²(+)稳态和动力学在众多生理过程中起着基础性作用。因此,在本文综述中,我们将重点关注 Panx 作为质膜和内质网膜上的通道,特别强调后者在细胞内 Ca²(+)信号中的潜在意义。