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A Blind Circadian Clock in Cavefish Reveals that Opsins Mediate Peripheral Clock Photoreception

机译:洞穴鱼中的一个昼夜节律钟揭示了视蛋白介导外围时钟的光接收

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摘要

The circadian clock is synchronized with the day-night cycle primarily by light. Fish represent fascinating models for deciphering the light input pathway to the vertebrate clock since fish cell clocks are regulated by direct light exposure. Here we have performed a comparative, functional analysis of the circadian clock involving the zebrafish that is normally exposed to the day-night cycle and a cavefish species that has evolved in perpetual darkness. Our results reveal that the cavefish retains a food-entrainable clock that oscillates with an infradian period. Importantly, however, this clock is not regulated by light. This comparative study pinpoints the two extra-retinal photoreceptors Melanopsin (Opn4m2) and TMT-opsin as essential upstream elements of the peripheral clock light input pathway.
机译:昼夜节律时钟主要通过光线与昼夜周期同步。鱼是迷人的模型,用于解密进入脊椎动物钟的光输入路径,因为鱼细胞钟受直接光照的调节。在这里,我们对昼夜节律的昼夜节律进行了比较,功能分析,其中斑马鱼通常暴露于昼夜周期,而永生黑暗中进化出的洞穴鱼物种。我们的结果表明,穴居鱼保留了一个可随食物携带的时钟,该时钟随红外周期而振荡。但是重要的是,该时钟不受光的调节。这项比较研究指出了两种视网膜外感光细胞黑素(Opn4m2)和TMT-视蛋白是外围时钟光输入通路的重要上游元素。

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