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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Optogenetics Comes of Age: Novel Inhibitory Light-Gated Anionic Channels Allow Efficient Silencing of Neural Function
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Optogenetics Comes of Age: Novel Inhibitory Light-Gated Anionic Channels Allow Efficient Silencing of Neural Function

机译:光遗传学时代的来临:新型抑制性光门控阴离子通道可有效沉默神经功能

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摘要

Optogenetics, the developing field of research that uses light-switchable biochemical tools in a sophisticated technological approach to monitor or control neural function, is rapidly evolving with the discovery and development of novel microbial rhodopsins. Light-absorbing membrane proteins, as tools for brain research, are promoting new applications within the discipline of optogenetics. Light-gated rhodopsin ion channels with better intrinsic light sensitivity and improved resolution are needed to overcome some of the current limitations of existing molecules. The recent discovery of light-gated inhibitory anion channels opens new opportunities for studying physiological neural processes and, at the same time, represent a powerful approach for elucidating the mechanisms of neurological and mental disorders that could benefit from this approach.
机译:光遗传学是在复杂的技术方法中使用光可开关生化工具监测或控制神经功能的研究开发领域,它随着新型微生物视紫红质的发现和发展而迅速发展。吸光膜蛋白作为大脑研究的工具,正在促进光遗传学领域的新应用。需要光门控视紫红质离子通道具有更好的固有光敏感性和更高的分辨率,以克服现有分子的一些当前限制。光门抑制性阴离子通道的最新发现为研究生理神经过程提供了新的机会,同时,它是阐明可以从该方法中受益的神经系统和精神疾病机制的有效方法。

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