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Natural light-gated anion channels: A family of microbial rhodopsins for advanced optogenetics

机译:天然的光门控阴离子通道:用于高级光遗传学的微生物视紫红质家族

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摘要

Light-gated rhodopsin cation channels from chlorophyte algae have transformed neuroscience research through their use as membrane-depolarizing optogenetic tools for targeted photoactivation of neuron firing. Photosuppression of neuronal action potentials has been limited by the lack of equally efficient tools for membrane hyperpolarization. We describe anion channel rhodopsins (ACRs), a family of light-gated anion channels from cryptophyte algae that provide highly sensitive and efficient membrane hyperpolarization and neuronal silencing through light-gated chloride conduction. ACRs strictly conducted anions, completely excluding protons and larger cations, and hyperpolarized the membrane of cultured animal cells with much faster kinetics at less than one-thousandth of the light intensity required by the most efficient currently available optogenetic proteins. Natural ACRs provide optogenetic inhibition tools with unprecedented light sensitivity and temporal precision.
机译:来自叶绿藻藻类的光门控视紫红质阳离子通道已经通过用作膜去极化光遗传学工具来靶向神经元激发光激活,从而改变了神经科学研究。缺乏同样有效的膜超极化工具,限制了神经元动作电位的光抑制。我们描述了阴离子通道视紫红质(ACRs),这是一种来自隐藻藻类的光门控阴离子通道,可通过光门控氯化物传导提供高度敏感和高效的膜超极化和神经元沉默。 ACR严格传导阴离子,完全排除质子和较大的阳离子,并以更快的动力学对培养的动物细胞的膜进行超极化,其光速不到目前最有效的光遗传蛋白所需光强度的千分之一。天然ACR为光遗传抑制工具提供了前所未有的光敏性和时间精度。

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