首页> 美国卫生研究院文献>Biophysical Journal >Distinct behavior of connexin56 and connexin46 gap junctional channels can be predicted from the behavior of their hemi-gap-junctional channels.
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Distinct behavior of connexin56 and connexin46 gap junctional channels can be predicted from the behavior of their hemi-gap-junctional channels.

机译:连接蛋白56和连接蛋白46间隙连接通道的不同行为可以从它们的半间隙连接通道的行为来预测。

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摘要

The gap-junctional protein rat connexin46 (Cx46) has the unusual ability to form voltage-gated channels in the nonjunctional plasma membrane of Xenopus oocytes (Paul et al., 1991; Ebihara and Steiner, 1993). These have been suggested to be gap-junctional hemichannels or connexons. The Xenopus oocyte system was used to characterize the functional properties of a closely related lens gap-junctional protein, chicken connexin56 (Cx56) (Rup et al., 1993) and to contrast them to those of rat Cx46. Single oocytes injected with either Cx56 or Cx46 cRNA developed time-dependent, outward currents that activated on depolarization. The currents induced by Cx56 and Cx46 showed differences in steady-state voltage dependence and in their degree of rectification. Furthermore, the voltage-dependent properties of the nonjunctional channels induced by the connexin cRNAs in external solutions containing low concentrations of calcium ions could account remarkably well for the behavior of the intercellular channels formed by Cx56 and Cx46 in paired oocytes. These results suggest that many of the voltage-dependent properties of the hemi-gap-junctional channels are retained by the intercellular channels.
机译:间隙连接蛋白大鼠连接蛋白46(Cx46)具有异常的能力在非洲爪蟾卵母细胞的非连接质膜上形成电压门控通道(Paul等,1991; Ebihara和Steiner,1993)。这些被认为是间隙连接的半通道或连接子。爪蟾卵母细胞系统用于表征紧密相关的晶状体间隙连接蛋白鸡连接蛋白56(Cx56)的功能特性(Rup等,1993),并将其与大鼠Cx46进行对比。注射Cx56或Cx46 cRNA的单卵母细胞会产生时间依赖性的向外电流,该电流在去极化时会激活。 Cx56和Cx46感应的电流在稳态电压依赖性及其整流度方面显示出差异。此外,连接蛋白cRNA在低浓度钙离子外部溶液中诱导的非连接通道的电压依赖性特性可以很好地说明配对卵母细胞中Cx56和Cx46形成的细胞间通道的行为。这些结果表明,半间隙连接通道的许多电压依赖性特性被细胞间通道保留。

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