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2018 Gairdner Awards: The past, present and future of light-gated ion channels and optogenetics

机译:2018 Gairdner Awards:光门离子通道和光遗传学的过去,现在和未来

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The discovery of the mechanisms underlying light-gated ion channels called channelrhodospins and the subsequent development of optogenetics illustrates how breakthroughs in science and technology can span multiple levels of scientific inquiry. Our knowledge of how channelrhodopsins work emerged from research at the microscopic level that investigated the structure and function of algal proteins. Optogenetics, on the other hand, exploits the power of channelrhodospins and similar proteins to investigate phenomena at the supra-macroscopic level, notably the neural circuits involved in animal behavior that may be relevant for understanding neuropsychiatric disease. This article is being published to celebrate Peter Hegemann, Karl Deisseroth and Ed Boyden receiving a 2018 Canada Gairdner International Award "for the discovery of light-gated ion channel mechanisms, and for the discovery of optogenetics, a technology that has revolutionized neuroscience".
机译:光通道离子通道(称为通道紫杉醇)基础机理的发现以及光遗传学的后续发展说明了科学技术的突破如何跨越科学探索的多个层面。我们对通道视紫红质如何工作的了解是从微观水平上研究藻类蛋白结构和功能的研究中得出的。另一方面,光遗传学则利用通道视紫红质和类似蛋白的力量来研究超显微镜下的现象,特别是涉及动物行为的神经回路,这可能与理解神经精神疾病有关。发表这篇文章是为了庆祝Peter Hegemann,Karl Deisseroth和Ed Boyden荣获2018年加拿大盖尔德纳国际奖“由于发现了光门控离子通道机制,并发现了光遗传学,这项技术彻底改变了神经科学”。

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