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Heterotypic docking of Cx43 and Cx45 connexons blocks fast voltage gating of Cx43.

机译:Cx43和Cx45连接器的异型对接会阻止Cx43的快速电压门控。

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摘要

Immunohistochemical co-localization of distinct connexins (Cxs) in junctional areas suggests the formation of heteromultimeric channels. To determine the docking effects of the heterotypic combination of Cx43 and Cx45 on the voltage-gating properties of their channels, we transfected DNA encoding Cx43 or Cx45 into N2A neuroblastoma or HeLa cells. Using a double whole-cell voltage-clamp technique, we determined macroscopic and single-channel gating properties of the intercellular channels formed. Cx43-Cx45 heterotypic channels had rectifying properties where Cx45 connexons inactivated rapidly upon hyperpolarizing voltage pulses applied to the Cx45-expressing cell. During depolarizing pulses to the Cx45-expressing cell, Cx43 connexons inactivated with substantially reduced kinetics as compared with homotypic Cx43 channels. Similar slow kinetics was observed for homotypic Cx43M257 (truncation mutant). Heterotypic channels had a main conductance whose value was predicted by the sum of corresponding homomeric connexon conductances; it was not voltage dependent and had no detectable residual conductance. The voltage-gating kinetics of heterotypic channels and their single-channel behavior implicate a role for the Cx43 carboxyl-terminal domain in the fast gating mechanism and in the establishment of residual conductance. Our results also suggest that heterotypic docking may lead to conformational changes that inhibit this action of the Cx43 carboxyl-terminal domain.
机译:在连接区不同连接蛋白(Cxs)的免疫组织化学共定位表明异多聚体通道的形成。为了确定Cx43和Cx45的异型组合对它们通道的电压门控特性的对接效应,我们将编码Cx43或Cx45的DNA转染到N2A神经母细胞瘤或HeLa细胞中。使用双全细胞电压钳技术,我们确定了形成的细胞间通道的宏观和单通道门控特性。 Cx43-Cx45异型通道具有整流特性,其中在向表达Cx45的细胞施加超极化电压脉冲后,Cx45连接子迅速失活。在与表达Cx45的细胞发生去极化脉冲期间,与同型Cx43通道相比,Cx43连接子失活,动力学大大降低。对于同型Cx43M257(截短突变体)观察到相似的慢动力学。异型通道具有主要电导,其值由相应的同质连接子电导的总和来预测。它与电压无关,并且没有可检测的残余电导。异型通道的电压门控动力学及其单通道行为暗示了Cx43羧基末端结构域在快速门控机制和残余电导的建立中的作用。我们的结果还表明,异型对接可能导致构象变化,从而抑制Cx43羧基末端结构域的这种作用。

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