Chen-Izu Y, Moreno A P, Spangler R A
Department of Physiology, University of Maryland School of Medicine, Baltimore, Maryland 21201, USA.
Am J Physiol Cell Physiol. 2001 Nov;281(5):C1604-13. doi: 10.1152/ajpcell.2001.281.5.C1604.
Gap junctions are intercellular channels that link the cytoplasm of neighboring cells. Because a gap junction channel is composed of two connexons docking head-to-head with each other, the channel voltage-gating profile is symmetrical for homotypic channels made of two identical connexons (hemichannels) and asymmetric for the heterotypic channels made of two different connexons (i.e., different connexin composition). In this study we have developed a gating model that allows quantitative characterization of the voltage gating of homotypic and heterotypic channels. This model differs from the present model in use by integrating, rather than separating, the contributions of the voltage gates of the two member connexons. The gating profile can now be fitted over the entire voltage range, eliminating the previous need for data splicing and fusion of two hemichannel descriptions, which is problematic when dealing with heterotypic channels. This model also provides a practical formula to render quantitative several previously qualitative concepts, including a similarity principle for matching a voltage gate to its host connexon, assignment of gating polarity to a connexon, and the effect of docking interactions between two member connexons in an intact gap junction channel.
间隙连接是连接相邻细胞细胞质的细胞间通道。由于间隙连接通道由两个对接的连接子组成,对于由两个相同连接子(半通道)构成的同型通道,通道电压门控特性是对称的,而对于由两个不同连接子(即不同连接蛋白组成)构成的异型通道则是不对称的。在本研究中,我们开发了一种门控模型,该模型能够对同型和异型通道的电压门控进行定量表征。该模型与目前使用的模型不同,它整合了两个成员连接子电压门的贡献,而不是将它们分开。现在,门控特性可以在整个电压范围内进行拟合,不再需要像以前那样拼接和融合两个半通道描述的数据,而这在处理异型通道时存在问题。该模型还提供了一个实用公式,使几个以前定性的概念能够量化,包括电压门与其宿主连接子匹配的相似性原则、连接子门控极性的分配以及完整间隙连接通道中两个成员连接子之间对接相互作用的影响。