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健康与疾病状态下膜电位和细胞外钙对连接蛋白半通道活性的调控

Regulation of connexin hemichannel activity by membrane potential and the extracellular calcium in health and disease.

作者信息

Fasciani Ilaria, Temperán Ana, Pérez-Atencio Leonel F, Escudero Adela, Martínez-Montero Paloma, Molano Jesús, Gómez-Hernández Juan M, Paino Carlos L, González-Nieto Daniel, Barrio Luis C

机构信息

Unit of Experimental Neurology-Neurobiology, "Ramón y Cajal" Hospital (IRYCIS), Madrid, Spain.

Unit of Experimental Neurology-Neurobiology, "Ramón y Cajal" Hospital (IRYCIS), Madrid, Spain; Unit of Molecular Genetics-INGEM, Hospital La Paz (IDIPAZ), Madrid, Spain.

出版信息

Neuropharmacology. 2013 Dec;75:479-90. doi: 10.1016/j.neuropharm.2013.03.040. Epub 2013 Apr 12.

DOI:10.1016/j.neuropharm.2013.03.040
PMID:23587648
Abstract

Connexins are thought to solely mediate cell-to-cell communication by forming gap junction channels composed of two membrane-spanning hemichannels positioned end-to-end. However, many if not all connexin isoforms also form functional hemichannels (i.e., the precursors of complete channels) that mediate the rapid exchange of ions, second messengers and metabolites between the cell interior and the interstitial space. Electrical and molecular signaling via connexin hemichannels is now widely recognized to be important in many physiological scenarios and pathological conditions. Indeed, mutations in connexins that alter hemichannel function have been implicated in several diseases. Here, we present a comprehensive overview of how hemichannel activity is tightly regulated by membrane potential and the external calcium concentration. In addition, we discuss the genetic mutations known to alter hemichannel function and their deleterious effects, of which a better understanding is necessary to develop novel therapeutic approaches for diseases caused by hemichannel dysfunction. This article is part of the Special Issue Section entitled 'Current Pharmacology of Gap Junction Channels and Hemichannels'.

摘要

人们认为,连接蛋白仅通过形成由两个跨膜半通道首尾相连组成的间隙连接通道来介导细胞间通讯。然而,许多(如果不是全部)连接蛋白亚型也会形成功能性半通道(即完整通道的前体),介导细胞内部与细胞间隙之间离子、第二信使和代谢物的快速交换。现在人们广泛认识到,通过连接蛋白半通道进行的电信号和分子信号在许多生理情况和病理状况中都很重要。事实上,改变半通道功能的连接蛋白突变已与多种疾病有关。在此,我们全面概述了膜电位和细胞外钙浓度如何紧密调节半通道活性。此外,我们讨论了已知会改变半通道功能的基因突变及其有害影响,为开发针对由半通道功能障碍引起的疾病的新型治疗方法,有必要更好地了解这些影响。本文是名为“间隙连接通道和半通道的当前药理学”的特刊部分的一部分。

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