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Interhelical interactions within the STIM1 CC1 domain modulate CRAC channel activation
The calcium release activated calcium (CRAC) channel is activated by the endoplasmic reticulum-resident calcium sensor protein STIM1. Upon activation, STIM1 C-terminus changes from an inactive, tight to an active, extended conformation. A coiled-coil (CC) clamp involving the CC1 and CC3 domains is e...
Autores principales: | , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7610458/ https://www.ncbi.nlm.nih.gov/pubmed/33106661 http://dx.doi.org/10.1038/s41589-020-00672-8 |
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author | Rathner, Petr Fahrner, Marc Cerofolini, Linda Grabmayr, Herwig Horvath, Ferdinand Krobath, Heinrich Gupta, Agrim Ravera, Enrico Fragai, Marco Bechmann, Matthias Renger, Thomas Luchinat, Claudio Romanin, Christoph Müller, Norbert |
author_facet | Rathner, Petr Fahrner, Marc Cerofolini, Linda Grabmayr, Herwig Horvath, Ferdinand Krobath, Heinrich Gupta, Agrim Ravera, Enrico Fragai, Marco Bechmann, Matthias Renger, Thomas Luchinat, Claudio Romanin, Christoph Müller, Norbert |
author_sort | Rathner, Petr |
collection | PubMed |
description | The calcium release activated calcium (CRAC) channel is activated by the endoplasmic reticulum-resident calcium sensor protein STIM1. Upon activation, STIM1 C-terminus changes from an inactive, tight to an active, extended conformation. A coiled-coil (CC) clamp involving the CC1 and CC3 domains is essential in controlling STIM1 activation, with CC1 as key entity. The NMR-derived solution structure of the CC1 domain represents a three-helix bundle stabilized by interhelical contacts, which are absent in the Stormorken disease-related STIM1 R304W mutant. Two interhelical sites between CC1α(1) and CC1α(2) helices are key in controlling STIM1 activation, affecting the balance between tight and extended conformations. NMR-directed mutations within these interhelical interactions restore the physiological, store-dependent activation behavior of the gain-of-function STIM1 R304W mutant. This study reveals the functional impact of interhelical interactions within the CC1 domain for modifying the CC1-CC3 clamp strength to control the activation of STIM1. |
format | Online Article Text |
id | pubmed-7610458 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
record_format | MEDLINE/PubMed |
spelling | pubmed-76104582021-04-26 Interhelical interactions within the STIM1 CC1 domain modulate CRAC channel activation Rathner, Petr Fahrner, Marc Cerofolini, Linda Grabmayr, Herwig Horvath, Ferdinand Krobath, Heinrich Gupta, Agrim Ravera, Enrico Fragai, Marco Bechmann, Matthias Renger, Thomas Luchinat, Claudio Romanin, Christoph Müller, Norbert Nat Chem Biol Article The calcium release activated calcium (CRAC) channel is activated by the endoplasmic reticulum-resident calcium sensor protein STIM1. Upon activation, STIM1 C-terminus changes from an inactive, tight to an active, extended conformation. A coiled-coil (CC) clamp involving the CC1 and CC3 domains is essential in controlling STIM1 activation, with CC1 as key entity. The NMR-derived solution structure of the CC1 domain represents a three-helix bundle stabilized by interhelical contacts, which are absent in the Stormorken disease-related STIM1 R304W mutant. Two interhelical sites between CC1α(1) and CC1α(2) helices are key in controlling STIM1 activation, affecting the balance between tight and extended conformations. NMR-directed mutations within these interhelical interactions restore the physiological, store-dependent activation behavior of the gain-of-function STIM1 R304W mutant. This study reveals the functional impact of interhelical interactions within the CC1 domain for modifying the CC1-CC3 clamp strength to control the activation of STIM1. 2021-02-01 2020-10-26 /pmc/articles/PMC7610458/ /pubmed/33106661 http://dx.doi.org/10.1038/s41589-020-00672-8 Text en http://www.nature.com/authors/editorial_policies/license.html#termsUsers may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms |
spellingShingle | Article Rathner, Petr Fahrner, Marc Cerofolini, Linda Grabmayr, Herwig Horvath, Ferdinand Krobath, Heinrich Gupta, Agrim Ravera, Enrico Fragai, Marco Bechmann, Matthias Renger, Thomas Luchinat, Claudio Romanin, Christoph Müller, Norbert Interhelical interactions within the STIM1 CC1 domain modulate CRAC channel activation |
title | Interhelical interactions within the STIM1 CC1 domain modulate CRAC channel activation |
title_full | Interhelical interactions within the STIM1 CC1 domain modulate CRAC channel activation |
title_fullStr | Interhelical interactions within the STIM1 CC1 domain modulate CRAC channel activation |
title_full_unstemmed | Interhelical interactions within the STIM1 CC1 domain modulate CRAC channel activation |
title_short | Interhelical interactions within the STIM1 CC1 domain modulate CRAC channel activation |
title_sort | interhelical interactions within the stim1 cc1 domain modulate crac channel activation |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7610458/ https://www.ncbi.nlm.nih.gov/pubmed/33106661 http://dx.doi.org/10.1038/s41589-020-00672-8 |
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