Cellular delivery and photochemical release of a caged inositol-pyrophosphate induces PH-domain translocation in cellulo

Photocaged inositol-pyrophosphates offer a tool to study cellular signalling, but their challenging synthesis has precluded any biological studies so far. Here, the authors report the synthesis and cellular delivery of a photocaged analogue, and show that it mediates protein translocation in cellulo...

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Autores principales: Igor Pavlovic, Divyeshsinh T. Thakor, Jessica R. Vargas, Colin J. McKinlay, Sebastian Hauke, Philipp Anstaett, Rafael C. Camuña, Laurent Bigler, Gilles Gasser, Carsten Schultz, Paul A. Wender, Henning J. Jessen
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/a6bac542d07b431a964d07a618a8a4d6
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spelling oai:doaj.org-article:a6bac542d07b431a964d07a618a8a4d62021-12-02T15:34:52ZCellular delivery and photochemical release of a caged inositol-pyrophosphate induces PH-domain translocation in cellulo10.1038/ncomms106222041-1723https://doaj.org/article/a6bac542d07b431a964d07a618a8a4d62016-02-01T00:00:00Zhttps://doi.org/10.1038/ncomms10622https://doaj.org/toc/2041-1723Photocaged inositol-pyrophosphates offer a tool to study cellular signalling, but their challenging synthesis has precluded any biological studies so far. Here, the authors report the synthesis and cellular delivery of a photocaged analogue, and show that it mediates protein translocation in cellulo.Igor PavlovicDivyeshsinh T. ThakorJessica R. VargasColin J. McKinlaySebastian HaukePhilipp AnstaettRafael C. CamuñaLaurent BiglerGilles GasserCarsten SchultzPaul A. WenderHenning J. JessenNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-8 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Igor Pavlovic
Divyeshsinh T. Thakor
Jessica R. Vargas
Colin J. McKinlay
Sebastian Hauke
Philipp Anstaett
Rafael C. Camuña
Laurent Bigler
Gilles Gasser
Carsten Schultz
Paul A. Wender
Henning J. Jessen
Cellular delivery and photochemical release of a caged inositol-pyrophosphate induces PH-domain translocation in cellulo
description Photocaged inositol-pyrophosphates offer a tool to study cellular signalling, but their challenging synthesis has precluded any biological studies so far. Here, the authors report the synthesis and cellular delivery of a photocaged analogue, and show that it mediates protein translocation in cellulo.
format article
author Igor Pavlovic
Divyeshsinh T. Thakor
Jessica R. Vargas
Colin J. McKinlay
Sebastian Hauke
Philipp Anstaett
Rafael C. Camuña
Laurent Bigler
Gilles Gasser
Carsten Schultz
Paul A. Wender
Henning J. Jessen
author_facet Igor Pavlovic
Divyeshsinh T. Thakor
Jessica R. Vargas
Colin J. McKinlay
Sebastian Hauke
Philipp Anstaett
Rafael C. Camuña
Laurent Bigler
Gilles Gasser
Carsten Schultz
Paul A. Wender
Henning J. Jessen
author_sort Igor Pavlovic
title Cellular delivery and photochemical release of a caged inositol-pyrophosphate induces PH-domain translocation in cellulo
title_short Cellular delivery and photochemical release of a caged inositol-pyrophosphate induces PH-domain translocation in cellulo
title_full Cellular delivery and photochemical release of a caged inositol-pyrophosphate induces PH-domain translocation in cellulo
title_fullStr Cellular delivery and photochemical release of a caged inositol-pyrophosphate induces PH-domain translocation in cellulo
title_full_unstemmed Cellular delivery and photochemical release of a caged inositol-pyrophosphate induces PH-domain translocation in cellulo
title_sort cellular delivery and photochemical release of a caged inositol-pyrophosphate induces ph-domain translocation in cellulo
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/a6bac542d07b431a964d07a618a8a4d6
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