High-efficiency optogenetic silencing with soma-targeted anion-conducting channelrhodopsins

Current optogenetic inhibition methods like light-controlled ion pumps require high-intensity light and disrupt physiological ion gradients. Here, the authors somatically target the anion-conducting opsin GtACR to eliminate spiking in distal axons and improve photocurrents, thus enhancing its utilit...

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Autores principales: Mathias Mahn, Lihi Gibor, Pritish Patil, Katayun Cohen-Kashi Malina, Shir Oring, Yoav Printz, Rivka Levy, Ilan Lampl, Ofer Yizhar
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/f380d92112754a26873ab98e84a8428e
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spelling oai:doaj.org-article:f380d92112754a26873ab98e84a8428e2021-12-02T17:31:31ZHigh-efficiency optogenetic silencing with soma-targeted anion-conducting channelrhodopsins10.1038/s41467-018-06511-82041-1723https://doaj.org/article/f380d92112754a26873ab98e84a8428e2018-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-06511-8https://doaj.org/toc/2041-1723Current optogenetic inhibition methods like light-controlled ion pumps require high-intensity light and disrupt physiological ion gradients. Here, the authors somatically target the anion-conducting opsin GtACR to eliminate spiking in distal axons and improve photocurrents, thus enhancing its utility.Mathias MahnLihi GiborPritish PatilKatayun Cohen-Kashi MalinaShir OringYoav PrintzRivka LevyIlan LamplOfer YizharNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-15 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Mathias Mahn
Lihi Gibor
Pritish Patil
Katayun Cohen-Kashi Malina
Shir Oring
Yoav Printz
Rivka Levy
Ilan Lampl
Ofer Yizhar
High-efficiency optogenetic silencing with soma-targeted anion-conducting channelrhodopsins
description Current optogenetic inhibition methods like light-controlled ion pumps require high-intensity light and disrupt physiological ion gradients. Here, the authors somatically target the anion-conducting opsin GtACR to eliminate spiking in distal axons and improve photocurrents, thus enhancing its utility.
format article
author Mathias Mahn
Lihi Gibor
Pritish Patil
Katayun Cohen-Kashi Malina
Shir Oring
Yoav Printz
Rivka Levy
Ilan Lampl
Ofer Yizhar
author_facet Mathias Mahn
Lihi Gibor
Pritish Patil
Katayun Cohen-Kashi Malina
Shir Oring
Yoav Printz
Rivka Levy
Ilan Lampl
Ofer Yizhar
author_sort Mathias Mahn
title High-efficiency optogenetic silencing with soma-targeted anion-conducting channelrhodopsins
title_short High-efficiency optogenetic silencing with soma-targeted anion-conducting channelrhodopsins
title_full High-efficiency optogenetic silencing with soma-targeted anion-conducting channelrhodopsins
title_fullStr High-efficiency optogenetic silencing with soma-targeted anion-conducting channelrhodopsins
title_full_unstemmed High-efficiency optogenetic silencing with soma-targeted anion-conducting channelrhodopsins
title_sort high-efficiency optogenetic silencing with soma-targeted anion-conducting channelrhodopsins
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/f380d92112754a26873ab98e84a8428e
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