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Variomics Screen Identifies the Re-entrant Loop of the Calcium-activated Chloride Channel ANO1 That Facilitates Channel Activation

机译:变形筛网识别钙激活的氯化物通道AnO1的再入循环,便于通道激活

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摘要

The calcium-activated chloride channelANO1regulates multiple physiological processes. However, little is known about the mechanism of channel gating and regulation of ANO1 activity. Using a high-throughput, random mutagenesis-based variomics screen, we generated and functionally characterized ∼6000 ANO1 mutants and identified novel mutations that affected channel activity, intracellular trafficking, or localization of ANO1. Mutations such as S741T increased ANO1 calcium sensitivity and rendered ANO1 calcium gating voltage-independent, demonstrating a critical role of the re-entrant loop in coupling calcium and voltage sensitivity of ANO1 and hence in regulating ANO1 activation. Our data present the first unbiased and comprehensive study of the structure-function relationship of ANO1. The novel ANO1 mutants reported have diverse functional characteristics, providing new tools to study ANO1 function in biological systems, paving the path for a better understanding of the function of ANO1 and its role in health and diseases.
机译:钙活化的氯化物channelANO1regulates多个生理过程。然而,知之甚少通道门控和ANO1活性的调控机制。使用高通量,随机诱变基于-variomics屏,我们产生和功能特征~6000 ANO1突变体和鉴定的新型突变,其受影响的通道的活性,细胞内运输,或ANO1的定位。突变如S741T增加ANO1钙敏感性和渲染ANO1钙门控电压无关的,这表明在耦合ANO1的钙和电压灵敏度,并因此在调节ANO1活化再入回路的关键作用。我们的数据提出ANO1的结构与功能关系的第一个公正和全面的研究。小说ANO1突变体报道有不同的功能特性,提供了新的工具来研究ANO1功能的生物系统铺平了道路为了更好地理解ANO1的功能及其在健康和疾病中的作用的。

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