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异型连接蛋白 50/连接蛋白 50 突变体缝隙连接通道揭示了在跨连接电压依赖性门控过程中两个半通道之间的相互作用。

Heterotypic connexin50/connexin50 mutant gap junction channels reveal interactions between two hemichannels during transjunctional voltage-dependent gating.

机构信息

Graduate Program of Neuroscience, The University of Western Ontario, London, Ontario, Canada N6A 5C1.

出版信息

J Physiol. 2012 Oct 15;590(20):5037-52. doi: 10.1113/jphysiol.2012.235507. Epub 2012 Jul 16.

Abstract

To investigate transjunctional voltage (Vj)-dependent gating mechanisms of connexin50 (Cx50) gap junction (GJ) channels and to elucidate the relative contribution of each hemichannel of a heterotypic GJ channel to Vj-dependent gating, we performed dual voltage-clamp recordings on heterotypic GJ channels formed by Cx50 and a mutant, Cx50N9R or a chimera, Cx50-Cx36N. Our results provide evidence that the two component hemichannels interact with each other during Vj-dependent gating. Cx50/Cx50N9R heterotypic GJ channels exhibited asymmetrical Vj-dependent gating which cannot be ascribed to the function of an individual hemichannel for a certain polarity of voltage; instead it can only be ascribed to the combined effects of both hemichannels. Single GJ channel open dwell-time analyses showed that homotypic Cx50 channels adopted short-lived and long-lived open states. Heterotypic combinations of Cx50/Cx50N9R gave rise to shorter mean dwell-times when Cx50-expressing cells received relatively positive Vj, and longer mean dwell-times when positive Vj was applied at the Cx50N9R side. In contrast, Cx50/Cx50-Cx36N heterotypic channels showed asymmetrical Vj-dependent gating, which appears to be caused by enhanced and reduced Vj-gating sensitivity of Cx50-Cx36N and Cx50 hemichannels, respectively. Unitary conductance of the main open state of both types of heterotypic GJ channel cannot be simply predicted by assuming a Vj redistribution across the two hemichannels arranged in series in heterotypic GJ channels. Our data also reveal reasons for the invisibility of fast Vj-gating transitions from open to substate in homotypic Cx50N9R and Cx50-Cx36N channels.

摘要

为了研究连接蛋白 50(Cx50)缝隙连接(GJ)通道的跨连接电压(Vj)依赖性门控机制,并阐明异型 GJ 通道的每个半通道对 Vj 依赖性门控的相对贡献,我们对由 Cx50 和突变体 Cx50N9R 或嵌合体 Cx50-Cx36N 形成的异型 GJ 通道进行了双电压钳记录。我们的结果提供了证据表明,两个组成部分的半通道在 Vj 依赖性门控过程中相互作用。Cx50/Cx50N9R 异型 GJ 通道表现出不对称的 Vj 依赖性门控,这不能归因于单个半通道对特定电压极性的功能;相反,它只能归因于两个半通道的综合效应。单个 GJ 通道开放停留时间分析表明,同源 Cx50 通道采用短暂和长寿命的开放状态。当 Cx50 表达细胞接收到相对正的 Vj 时,Cx50/Cx50N9R 的异型组合导致较短的平均停留时间,而当正 Vj 施加在 Cx50N9R 侧时,导致较长的平均停留时间。相比之下,Cx50/Cx50-Cx36N 异型通道表现出不对称的 Vj 依赖性门控,这似乎是由 Cx50-Cx36N 和 Cx50 半通道的 Vj 门控敏感性增强和降低引起的。两种异型 GJ 通道的主要开放状态的单元电导不能简单地通过假设在异型 GJ 通道中串联排列的两个半通道之间的 Vj 重新分布来预测。我们的数据还揭示了同源 Cx50N9R 和 Cx50-Cx36N 通道中从开放到亚状态的快速 Vj 门控转变不可见的原因。

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