The past, present and future of light-gated ion channels and optogenetics
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...
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doaj-dbd5ccf56ed24f8aa73bca15db07cc222021-05-05T16:14:09ZengeLife Sciences Publications LtdeLife2050-084X2018-10-01710.7554/eLife.42367The past, present and future of light-gated ion channels and optogeneticsSheena A Josselyn0https://orcid.org/0000-0001-5451-489XProgram in Neurosciences & Mental Health, Hospital for Sick Children, Toronto, Canada; Department of Psychology, University of Toronto, Toronto, Canada; Department of Physiology, University of Toronto, Toronto, Canada; Institute of Medical Sciences, University of Toronto, Toronto, Canada; Brain, Mind & Consciousness Program, Canadian Institute for Advanced Research, Toronto, CanadaThe 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".https://elifesciences.org/articles/42367optogeneticslight-gated ion channelschannelrhodospinsneural circuitsanimal behaviorneuropsychiatric disease |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sheena A Josselyn |
spellingShingle |
Sheena A Josselyn The past, present and future of light-gated ion channels and optogenetics eLife optogenetics light-gated ion channels channelrhodospins neural circuits animal behavior neuropsychiatric disease |
author_facet |
Sheena A Josselyn |
author_sort |
Sheena A Josselyn |
title |
The past, present and future of light-gated ion channels and optogenetics |
title_short |
The past, present and future of light-gated ion channels and optogenetics |
title_full |
The past, present and future of light-gated ion channels and optogenetics |
title_fullStr |
The past, present and future of light-gated ion channels and optogenetics |
title_full_unstemmed |
The past, present and future of light-gated ion channels and optogenetics |
title_sort |
past, present and future of light-gated ion channels and optogenetics |
publisher |
eLife Sciences Publications Ltd |
series |
eLife |
issn |
2050-084X |
publishDate |
2018-10-01 |
description |
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". |
topic |
optogenetics light-gated ion channels channelrhodospins neural circuits animal behavior neuropsychiatric disease |
url |
https://elifesciences.org/articles/42367 |
work_keys_str_mv |
AT sheenaajosselyn thepastpresentandfutureoflightgatedionchannelsandoptogenetics AT sheenaajosselyn pastpresentandfutureoflightgatedionchannelsandoptogenetics |
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