ORAI2 modulates store-operated calcium entry and T cell-mediated immunity

Ca2+ release-activated Ca2+(CRAC) channels are essential for protective immunity, but the immunological functions of the three ORAI homologues that form CRAC channels are unclear. Here the authors show that ORAI1 and ORAI2 form heteromeric CRAC channels, which fine-tune T cell activation and immune...

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Main Authors: Martin Vaeth, Jun Yang, Megumi Yamashita, Isabelle Zee, Miriam Eckstein, Camille Knosp, Ulrike Kaufmann, Peter Karoly Jani, Rodrigo S. Lacruz, Veit Flockerzi, Imre Kacskovics, Murali Prakriya, Stefan Feske
Format: Article
Language:English
Published: Nature Portfolio 2017-03-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms14714
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author Martin Vaeth
Jun Yang
Megumi Yamashita
Isabelle Zee
Miriam Eckstein
Camille Knosp
Ulrike Kaufmann
Peter Karoly Jani
Rodrigo S. Lacruz
Veit Flockerzi
Imre Kacskovics
Murali Prakriya
Stefan Feske
author_facet Martin Vaeth
Jun Yang
Megumi Yamashita
Isabelle Zee
Miriam Eckstein
Camille Knosp
Ulrike Kaufmann
Peter Karoly Jani
Rodrigo S. Lacruz
Veit Flockerzi
Imre Kacskovics
Murali Prakriya
Stefan Feske
author_sort Martin Vaeth
collection DOAJ
description Ca2+ release-activated Ca2+(CRAC) channels are essential for protective immunity, but the immunological functions of the three ORAI homologues that form CRAC channels are unclear. Here the authors show that ORAI1 and ORAI2 form heteromeric CRAC channels, which fine-tune T cell activation and immune responses.
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spelling doaj.art-cecf348141a04e5d97c610a4720fbbd42022-12-21T23:39:00ZengNature PortfolioNature Communications2041-17232017-03-018111710.1038/ncomms14714ORAI2 modulates store-operated calcium entry and T cell-mediated immunityMartin Vaeth0Jun Yang1Megumi Yamashita2Isabelle Zee3Miriam Eckstein4Camille Knosp5Ulrike Kaufmann6Peter Karoly Jani7Rodrigo S. Lacruz8Veit Flockerzi9Imre Kacskovics10Murali Prakriya11Stefan Feske12Department of Pathology, Experimental Pathology Program, New York University School of MedicineDepartment of Pathology, Experimental Pathology Program, New York University School of MedicineDepartment of Pharmacology, Northwestern University, Feinberg School of MedicineDepartment of Pathology, Experimental Pathology Program, New York University School of MedicineNYU College of Dentistry, New York UniversityDepartment of Pathology, Experimental Pathology Program, New York University School of MedicineDepartment of Pathology, Experimental Pathology Program, New York University School of MedicineImmunoGenesNYU College of Dentistry, New York UniversityExperimental and Clinical Pharmacology and Toxicology, School of Medicine, Saarland UniversityImmunoGenesDepartment of Pharmacology, Northwestern University, Feinberg School of MedicineDepartment of Pathology, Experimental Pathology Program, New York University School of MedicineCa2+ release-activated Ca2+(CRAC) channels are essential for protective immunity, but the immunological functions of the three ORAI homologues that form CRAC channels are unclear. Here the authors show that ORAI1 and ORAI2 form heteromeric CRAC channels, which fine-tune T cell activation and immune responses.https://doi.org/10.1038/ncomms14714
spellingShingle Martin Vaeth
Jun Yang
Megumi Yamashita
Isabelle Zee
Miriam Eckstein
Camille Knosp
Ulrike Kaufmann
Peter Karoly Jani
Rodrigo S. Lacruz
Veit Flockerzi
Imre Kacskovics
Murali Prakriya
Stefan Feske
ORAI2 modulates store-operated calcium entry and T cell-mediated immunity
Nature Communications
title ORAI2 modulates store-operated calcium entry and T cell-mediated immunity
title_full ORAI2 modulates store-operated calcium entry and T cell-mediated immunity
title_fullStr ORAI2 modulates store-operated calcium entry and T cell-mediated immunity
title_full_unstemmed ORAI2 modulates store-operated calcium entry and T cell-mediated immunity
title_short ORAI2 modulates store-operated calcium entry and T cell-mediated immunity
title_sort orai2 modulates store operated calcium entry and t cell mediated immunity
url https://doi.org/10.1038/ncomms14714
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