Optogenetic control of protein binding using light-switchable nanobodies

The ability to regulate nanobody affinity with light would expand the applications toolbox for these reagents. Here the authors insert an optimised photoswitchable AsLOV2 domain into multiple nanobodies and demonstrate photoswitchable binding to fluorescent proteins and endogenous proteins in cells.

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Autores principales: Agnieszka A. Gil, César Carrasco-López, Liyuan Zhu, Evan M. Zhao, Pavithran T. Ravindran, Maxwell Z. Wilson, Alexander G. Goglia, José L. Avalos, Jared E. Toettcher
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/0efe65320d7b472997bd875d0dcd862e
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spelling oai:doaj.org-article:0efe65320d7b472997bd875d0dcd862e2021-12-02T15:08:24ZOptogenetic control of protein binding using light-switchable nanobodies10.1038/s41467-020-17836-82041-1723https://doaj.org/article/0efe65320d7b472997bd875d0dcd862e2020-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17836-8https://doaj.org/toc/2041-1723The ability to regulate nanobody affinity with light would expand the applications toolbox for these reagents. Here the authors insert an optimised photoswitchable AsLOV2 domain into multiple nanobodies and demonstrate photoswitchable binding to fluorescent proteins and endogenous proteins in cells.Agnieszka A. GilCésar Carrasco-LópezLiyuan ZhuEvan M. ZhaoPavithran T. RavindranMaxwell Z. WilsonAlexander G. GogliaJosé L. AvalosJared E. ToettcherNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Agnieszka A. Gil
César Carrasco-López
Liyuan Zhu
Evan M. Zhao
Pavithran T. Ravindran
Maxwell Z. Wilson
Alexander G. Goglia
José L. Avalos
Jared E. Toettcher
Optogenetic control of protein binding using light-switchable nanobodies
description The ability to regulate nanobody affinity with light would expand the applications toolbox for these reagents. Here the authors insert an optimised photoswitchable AsLOV2 domain into multiple nanobodies and demonstrate photoswitchable binding to fluorescent proteins and endogenous proteins in cells.
format article
author Agnieszka A. Gil
César Carrasco-López
Liyuan Zhu
Evan M. Zhao
Pavithran T. Ravindran
Maxwell Z. Wilson
Alexander G. Goglia
José L. Avalos
Jared E. Toettcher
author_facet Agnieszka A. Gil
César Carrasco-López
Liyuan Zhu
Evan M. Zhao
Pavithran T. Ravindran
Maxwell Z. Wilson
Alexander G. Goglia
José L. Avalos
Jared E. Toettcher
author_sort Agnieszka A. Gil
title Optogenetic control of protein binding using light-switchable nanobodies
title_short Optogenetic control of protein binding using light-switchable nanobodies
title_full Optogenetic control of protein binding using light-switchable nanobodies
title_fullStr Optogenetic control of protein binding using light-switchable nanobodies
title_full_unstemmed Optogenetic control of protein binding using light-switchable nanobodies
title_sort optogenetic control of protein binding using light-switchable nanobodies
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/0efe65320d7b472997bd875d0dcd862e
work_keys_str_mv AT agnieszkaagil optogeneticcontrolofproteinbindingusinglightswitchablenanobodies
AT cesarcarrascolopez optogeneticcontrolofproteinbindingusinglightswitchablenanobodies
AT liyuanzhu optogeneticcontrolofproteinbindingusinglightswitchablenanobodies
AT evanmzhao optogeneticcontrolofproteinbindingusinglightswitchablenanobodies
AT pavithrantravindran optogeneticcontrolofproteinbindingusinglightswitchablenanobodies
AT maxwellzwilson optogeneticcontrolofproteinbindingusinglightswitchablenanobodies
AT alexanderggoglia optogeneticcontrolofproteinbindingusinglightswitchablenanobodies
AT joselavalos optogeneticcontrolofproteinbindingusinglightswitchablenanobodies
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