The native ORAI channel trio underlies the diversity of Ca2+ signaling events

The essential role of ORAI1 channels in receptor-evoked Ca2+ signaling is well understood, but the roles of ORAI2 and ORAI3 remained obscure. Here authors show that ORAI2 and ORAI3 channels multimerize with ORAI1 to expand the range of sensitivity of receptor-activated Ca2+ signals, reflecting their...

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Autores principales: Ryan E. Yoast, Scott M. Emrich, Xuexin Zhang, Ping Xin, Martin T. Johnson, Adam J. Fike, Vonn Walter, Nadine Hempel, David I. Yule, James Sneyd, Donald L. Gill, Mohamed Trebak
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/d0bad2674967414e8be76ad70168e97d
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spelling oai:doaj.org-article:d0bad2674967414e8be76ad70168e97d2021-12-02T17:15:59ZThe native ORAI channel trio underlies the diversity of Ca2+ signaling events10.1038/s41467-020-16232-62041-1723https://doaj.org/article/d0bad2674967414e8be76ad70168e97d2020-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16232-6https://doaj.org/toc/2041-1723The essential role of ORAI1 channels in receptor-evoked Ca2+ signaling is well understood, but the roles of ORAI2 and ORAI3 remained obscure. Here authors show that ORAI2 and ORAI3 channels multimerize with ORAI1 to expand the range of sensitivity of receptor-activated Ca2+ signals, reflecting their enhanced basal STIM1-binding and heightened Ca2+-dependent inactivation.Ryan E. YoastScott M. EmrichXuexin ZhangPing XinMartin T. JohnsonAdam J. FikeVonn WalterNadine HempelDavid I. YuleJames SneydDonald L. GillMohamed TrebakNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-16 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ryan E. Yoast
Scott M. Emrich
Xuexin Zhang
Ping Xin
Martin T. Johnson
Adam J. Fike
Vonn Walter
Nadine Hempel
David I. Yule
James Sneyd
Donald L. Gill
Mohamed Trebak
The native ORAI channel trio underlies the diversity of Ca2+ signaling events
description The essential role of ORAI1 channels in receptor-evoked Ca2+ signaling is well understood, but the roles of ORAI2 and ORAI3 remained obscure. Here authors show that ORAI2 and ORAI3 channels multimerize with ORAI1 to expand the range of sensitivity of receptor-activated Ca2+ signals, reflecting their enhanced basal STIM1-binding and heightened Ca2+-dependent inactivation.
format article
author Ryan E. Yoast
Scott M. Emrich
Xuexin Zhang
Ping Xin
Martin T. Johnson
Adam J. Fike
Vonn Walter
Nadine Hempel
David I. Yule
James Sneyd
Donald L. Gill
Mohamed Trebak
author_facet Ryan E. Yoast
Scott M. Emrich
Xuexin Zhang
Ping Xin
Martin T. Johnson
Adam J. Fike
Vonn Walter
Nadine Hempel
David I. Yule
James Sneyd
Donald L. Gill
Mohamed Trebak
author_sort Ryan E. Yoast
title The native ORAI channel trio underlies the diversity of Ca2+ signaling events
title_short The native ORAI channel trio underlies the diversity of Ca2+ signaling events
title_full The native ORAI channel trio underlies the diversity of Ca2+ signaling events
title_fullStr The native ORAI channel trio underlies the diversity of Ca2+ signaling events
title_full_unstemmed The native ORAI channel trio underlies the diversity of Ca2+ signaling events
title_sort native orai channel trio underlies the diversity of ca2+ signaling events
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/d0bad2674967414e8be76ad70168e97d
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