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首页> 外文期刊>Circulation research: a journal of the American Heart Association >Explaining calcium-dependent gating of anoctamin-1 chloride channels requires a revised topology
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Explaining calcium-dependent gating of anoctamin-1 chloride channels requires a revised topology

机译:解释依赖于钙的门禁性的Octamin-1氯离子通道需要修改后的拓扑

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摘要

Rationale: Ca 2+-activated Cl channels play pivotal roles in the cardiovascular system. They regulate vascular smooth muscle tone and participate in cardiac action potential repolarization in some species. Ca 2+-activated Cl channels were recently discovered to be encoded by members of the anoctamin (Ano, also called Tmem16) superfamily, but the mechanisms of Ano1 gating by Ca 2+ remain enigmatic. Objective: The objective was to identify regions of Ano1 involved in channel gating by Ca 2+. Methods and Results: The Ca 2+ sensitivity of Ano1 was estimated from rates of current activation, and deactivation in excised patches rapidly switched between zero and high Ca 2+ on the cytoplasmic side. Mutation of glutamates E702 and E705 dramatically altered Ca 2+ sensitivity. E702 and E705 are predicted to be in an extracellular loop, but antigenic epitopes introduced into this loop are not accessible to extracellular antibodies, suggesting this loop is intracellular. Cytoplasmically applied membrane-impermeant sulfhydryl reagents alter the Ca 2+ sensitivity of Ano1 E702C and E705C as expected if E702 and E705 are intracellular. Substituted cysteine accessibility mutagenesis of the putative re-entrant loop suggests that E702 and E705 are located adjacent to the Cl conduction pathway. Conculsion: We propose an alternative model of Ano1 topology based on mutagenesis, epitope accessibility, and cysteine-scanning accessibility. These data contradict the popular re-entrant loop model by showing that the putative fourth extracellular loop (ECL 4) is intracellular and may contain a Ca 2+ binding site. These studies provide new perspectives on regulation of Ano1 by Ca.
机译:理由:Ca 2+激活的Cl通道在心血管系统中起关键作用。它们调节血管平滑肌的张力,并参与某些物种的心脏动作电位复极化。最近发现,Ca 2+激活的Cl通道是由八环素(Ano,也称为Tmem16)超家族成员编码的,但是由Ca 2+进行Ano1门控的机制仍然是个谜。目的:目的是确定参与Ca 2+通道门控的Ano1区域。方法和结果:从电流激活率估计Ano1的Ca 2+敏感性,并且在细胞质侧,切除的补丁中的失活迅速在零和高Ca 2+之间切换。谷氨酸盐E702和E705的突变显着改变了Ca 2+的敏感性。预计E702和E705位于细胞外环中,但是引入该环中的抗原表位是细胞外抗体无法接近的,这表明该环在细胞内。如果E702和E705在细胞内,则如预期的那样,细胞质应用的不渗透膜的巯基试剂会改变Ano1 E702C和E705C的Ca 2+敏感性。推定的折返环的取代的半胱氨酸可及性诱变表明,E702和E705位于Cl传导途径附近。结论:我们提出了一种基于诱变,表位可及性和半胱氨酸扫描可及性的Ano1拓扑结构的替代模型。这些数据通过证明推定的第四个细胞外环(ECL 4)在细胞内并且可能包含Ca 2+结合位点,与流行的折返环模型相矛盾。这些研究为钙对Ano1的调控提供了新的见解。

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