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第一个细胞内环中的酸性氨基酸有助于八聚体通道蛋白1/跨膜蛋白16A(anoctamin1/TMEM16A)的电压依赖性和钙依赖性门控。

Acidic amino acids in the first intracellular loop contribute to voltage- and calcium- dependent gating of anoctamin1/TMEM16A.

作者信息

Xiao Qinghuan, Cui Yuanyuan

机构信息

From the Department of Ion Channel Pharmacology, School of Pharmacy, China Medical University, Shenyang, China.

Department of Cell biology, School of Medicine, Emory University, Atlanta, Georgia, United States of America.

出版信息

PLoS One. 2014 Jun 5;9(6):e99376. doi: 10.1371/journal.pone.0099376. eCollection 2014.

Abstract

Anoctamin1 (Ano1, or TMEM16A) is a Ca2+-activated chloride channel that is gated by both voltage and Ca2+. We have previously identified that the first intracellular loop that contains a high density of acidic residues mediates voltage- and calcium-dependent gating of Ano1. Mutation of the four consecutive glutamates (444EEEE447) inhibits the voltage-dependent activation of Ano1, whereas deletion of these residues decreases apparent Ca2+ sensitivity. In the present study, we further found that deletion of 444EEEEEAVKD452 produced a more than 40-fold decrease in the apparent Ca2+ sensitivity with altered activation kinetics. We then systematically mutated each acidic residue into alanine, and analyzed the voltage- and calcium dependent activation of each mutation. Activation kinetics of wild type Ano1 consisted of a fast component (τfast) that represented voltage-dependent mode, and a slow component (τslow) that reflected the Ca2+-dependent modal gating. E444A, E445A, E446A, E447A, E448A, and E457A mutations showed a decrease in the τfast, significantly inhibited voltage-dependent activation of Ano1 in the absence of Ca2+, and greatly shifted the G-V curve to the right, suggesting that these glutamates are involved in voltage-gating of Ano1. Furthermore, D452A, E464A, E470A, and E475A mutations that did not alter voltage-dependent activation of the channel, significantly decreased Ca2+ dependence of G-V curve, exhibited an increase in the τslow, and produced a 2-3 fold decrease in the apparent Ca2+ sensitivity, suggesting that these acidic residues are involved in Ca2+-dependent gating of the channel. Our data show that acidic residues in the first intracellular loop are the important structural determinant that couples the voltage and calcium dependent gating of Ano1.

摘要

anoctamin1(Ano1,或TMEM16A)是一种Ca2+激活的氯离子通道,受电压和Ca2+双重调控。我们之前已经确定,第一个含有高密度酸性残基的细胞内环介导了Ano1的电压依赖性和钙依赖性门控。四个连续谷氨酸(444EEEE447)的突变抑制了Ano1的电压依赖性激活,而删除这些残基则降低了表观Ca2+敏感性。在本研究中,我们进一步发现,删除444EEEEEAVKD452会使表观Ca2+敏感性降低40多倍,同时激活动力学发生改变。然后,我们系统地将每个酸性残基突变为丙氨酸,并分析每个突变体的电压依赖性和钙依赖性激活。野生型Ano1的激活动力学由代表电压依赖性模式的快速成分(τfast)和反映Ca2+依赖性模式门控的慢速成分(τslow)组成。E444A、E445A、E446A、E447A、E448A和E457A突变显示τfast降低,在无Ca2+时显著抑制Ano1的电压依赖性激活,并且G-V曲线大幅右移,表明这些谷氨酸参与了Ano1的电压门控。此外,不改变通道电压依赖性激活的D452A、E464A、E470A和E475A突变显著降低了G-V曲线的Ca2+依赖性,τslow增加,表观Ca2+敏感性降低2-3倍,表明这些酸性残基参与了通道的Ca2+依赖性门控。我们的数据表明,第一个细胞内环中的酸性残基是连接Ano1电压依赖性和钙依赖性门控的重要结构决定因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d78/4047086/c2f9f09bfb9f/pone.0099376.g001.jpg

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