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Pore stoichiometry of a voltage-gated chloride channel.

机译:电压门控氯离子通道的孔化学计量。

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Ion channels allow ions to pass through cell membranes by forming aqueous permeation pathways (pores). In contrast to most known ion channels, which have single pores, a chloride channel belonging to the CIC family (Torpedo CIC-0) has functional features that suggest that it has a unique 'double-barrelled' architecture in which each of two subunits forms an independent pore. This model is based on single-channel recordings of CIC-0 that has two equally spaced and independently gated conductance states. Other CIC isoforms do not behave in this way, raising doubts about the applicability of the model to all CIC channels. Here we determine the pore stoichiometry of another CIC isoform, human CIC-1, by chemically modifying cysteines that have been substituted for other amino acids located within the CIC ion-selectivity filter. The CIC-1 channel can be rendered completely susceptible to block by methanethiosulphonate reagents when only one of the two subunits contains substituted cysteines. Thiol side chains placed at corresponding positions in both subunits can form intersubunit disulphide bridges and coordinate Cd2+, indicating that the pore-forming regions from each subunit line the same conduction pathway. We conclude that human CIC-1 has a single functional pore.
机译:离子通道通过形成水的渗透途径(孔),使离子穿过细胞膜。与大多数已知的具有单个孔的离子通道相反,属于CIC家族(Torpedo CIC-0)的氯离子通道具有功能特征,表明其具有独特的“双管”结构,其中两个亚基各自形成一个独立的毛孔。该模型基于CIC-0的单通道记录,该记录具有两个等距且独立选通的电导状态。其他CIC异构体不能以这种方式运行,从而引起对该模型对所有CIC通道的适用性的怀疑。在这里,我们通过化学修饰已取代位于CIC离子选择性过滤器内其他氨基酸的半胱氨酸来确定另一种CIC同种型,人CIC-1的孔化学计量。当两个亚基中的仅一个包含取代的半胱氨酸时,可使CIC-1通道完全易受甲硫磺酸盐试剂的阻滞。放置在两个亚基中相应位置的硫醇侧链可形成亚基间二硫键并协调Cd2 +,表明来自每个亚基的成孔区域沿相同的传导途径。我们得出的结论是,人类CIC-1具有单个功能孔。

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