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首页> 外文期刊>Nature Communications >MerMAIDs: a family of metagenomically discovered marine anion-conducting and intensely desensitizing channelrhodopsins
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MerMAIDs: a family of metagenomically discovered marine anion-conducting and intensely desensitizing channelrhodopsins

机译:美人鱼:一系列的梅泰古物学发现海洋阴离子导电和强烈脱敏的渠道曲折

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Channelrhodopsins (ChRs) are algal light-gated ion channels widely used as optogenetic tools for manipulating neuronal activity. ChRs desensitize under continuous bright-light illumination, resulting in a significant decline of photocurrents. Here we describe a metagenomically identified family of phylogenetically distinct anion-conducting ChRs (designated MerMAIDs). MerMAIDs almost completely desensitize during continuous illumination due to accumulation of a late non-conducting photointermediate that disrupts the ion permeation pathway. MerMAID desensitization can be fully explained by a single photocycle in which a long-lived desensitized state follows the short-lived conducting state. A conserved cysteine is the critical factor in desensitization, as its mutation results in recovery of large stationary photocurrents. The rapid desensitization of MerMAIDs enables their use as optogenetic silencers for transient suppression of individual action potentials without affecting subsequent spiking during continuous illumination. Our results could facilitate the development of optogenetic tools from metagenomic databases and enhance general understanding of ChR function.
机译:通道流肌蛋白素(CHRS)是广泛用作用于操纵神经元活动的致光学工具的藻类光栅离子通道。 CHRS在连续亮光照射下脱敏,导致光电流的显着下降。在这里,我们描述了一种雌噬菌素鉴定的系统源性不同阴离子导电CHRS(指定的美人鱼)。在连续照射期间,美人鱼几乎完全脱敏,因为未晚的非导电光线反应损坏离子渗透途径的累积。美人鱼脱敏可以通过单个光圈完全解释,其中长寿命的脱敏状态遵循短寿命的导电状态。保守的半胱氨酸是脱敏中的关键因素,因为其突变导致恢复大型固定光电流。美人鱼类的快速脱敏使其能够用作致光学消解器,用于瞬态抑制单个动作电位,而不会在连续照明期间随后的尖刺。我们的结果可以促进来自偏见数据库的致原工具,并提高对CHR功能的一般理解。

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