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  3. Discovery of novel gating checkpoints in the Orai1 calcium channel by systematic analysis of constitutively active mutants of its paralogs and orthologs.
 

Discovery of novel gating checkpoints in the Orai1 calcium channel by systematic analysis of constitutively active mutants of its paralogs and orthologs.

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BORIS DOI
10.48350/171152
Date of Publication
July 2022
Publication Type
Article
Division/Institute

Institut für Biochemi...

Universitätsklinik fü...

Department for BioMed...

Department for BioMed...

Contributor
Augustynek, Bartlomiej Stanislaw
Universitätsklinik für Nephrologie und Hypertonie
Department for BioMedical Research, Forschungsgruppe Nephrologie / Hypertonie
Gyimesi, Gergely
Department for BioMedical Research, Forschungsgruppe Nephrologie / Hypertonie
Universitätsklinik für Nephrologie und Hypertonie
Dernič, Jan
Department for BioMedical Research (DBMR)
Sallinger, Matthias
Albano, Giuseppe
Department for BioMedical Research, Forschungsgruppe Nephrologie / Hypertonie
Universitätsklinik für Nephrologie und Hypertonie
Klesse, Gabriel Jonathan
Department for BioMedical Research, Forschungsgruppe Nephrologie / Hypertonie
Universitätsklinik für Nephrologie und Hypertonie
Kandasamy, Palanivel
Universitätsklinik für Nephrologie und Hypertonie
Department for BioMedical Research, Forschungsgruppe Nephrologie / Hypertonie
Grabmayr, Herwig
Frischauf, Irene
Fuster, Daniel Guidoorcid-logo
Universitätsklinik für Nephrologie und Hypertonie
Department for BioMedical Research, Forschungsgruppe Nephrologie / Hypertonie
Peinelt, Christine
Institut für Biochemie und Molekulare Medizin (IBMM)
Hediger, Matthiasorcid-logo
Universitätsklinik für Nephrologie und Hypertonie
Department for BioMedical Research, Forschungsgruppe Nephrologie / Hypertonie
Bhardwaj, Rajesh
Universitätsklinik für Nephrologie und Hypertonie
Department for BioMedical Research, Forschungsgruppe Nephrologie / Hypertonie
Subject(s)

600 - Technology::610...

500 - Science::570 - ...

Series
Cell calcium
ISSN or ISBN (if monograph)
0143-4160
Publisher
Elsevier
Language
English
Publisher DOI
10.1016/j.ceca.2022.102616
PubMed ID
35792401
Uncontrolled Keywords

ANSGA Calcium Orai1 O...

Description
In humans, there are three paralogs of the Orai Ca2+ channel that form the core of the store-operated calcium entry (SOCE) machinery. While the STIM-mediated gating mechanism of Orai channels is still under active investigation, several artificial and natural variants are known to cause constitutive activity of the human Orai1 channel. Surprisingly, little is known about the conservation of the gating checkpoints among the different human Orai paralogs and orthologs in other species. In our work, we show that the mutation corresponding to the activating mutation H134A in transmembrane helix 2 (TM2) of human Orai1 also activates Orai2 and Orai3, likely via a similar mechanism. However, this cross-paralog conservation does not apply to the "ANSGA" nexus mutations in TM4 of human Orai1, which is reported to mimic the STIM1-activated state of the channel. In investigating the mechanistic background of these differences, we identified two positions, H171 and F246 in human Orai1, that are not conserved among paralogs and that seem to be crucial for the channel activation triggered by the "ANSGA" mutations in Orai1. However, mutations of the same residues still allow gating of Orai1 by STIM1, suggesting that the ANSGA mutant of Orai1 may not be a surrogate for the STIM1-activated state of the Orai1 channel. Our results shed new light on these important gating checkpoints and show that the gating mechanism of Orai channels is affected by multiple factors that are not necessarily conserved among orai homologs, such as the TM4-TM3 coupling.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/86024
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1-s2.0-S0143416022000896-main.pdftextAdobe PDF10.9 MBpublishedOpen
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