Lithium Sensitive ORAI1 Expression, Store Operated Ca2+ Entry and Suicidal Death of Neurons in Chorea-Acanthocytosis

Abstract Chorea-Acanthocytosis (ChAc), a neurodegenerative disorder, results from loss-of-function-mutations of chorein-encoding gene VPS13A. In tumour cells chorein up-regulates ORAI1, a Ca2+-channel accomplishing store operated Ca2+-entry (SOCE) upon stimulation by STIM1. Furthermore SOCE could be...

Full description

Bibliographic Details
Main Authors: Lisann Pelzl, Stefan Hauser, Bhaeldin Elsir, Basma Sukkar, Itishri Sahu, Yogesh Singh, Philip Höflinger, Rosi Bissinger, Mohamed Jemaà, Christos Stournaras, Ludger Schöls, Florian Lang
Format: Article
Language:English
Published: Nature Publishing Group 2017-07-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-017-06451-1
id doaj-34fec634c07e43438b1686562183e2b0
record_format Article
spelling doaj-34fec634c07e43438b1686562183e2b02020-12-08T00:20:07ZengNature Publishing GroupScientific Reports2045-23222017-07-017111010.1038/s41598-017-06451-1Lithium Sensitive ORAI1 Expression, Store Operated Ca2+ Entry and Suicidal Death of Neurons in Chorea-AcanthocytosisLisann Pelzl0Stefan Hauser1Bhaeldin Elsir2Basma Sukkar3Itishri Sahu4Yogesh Singh5Philip Höflinger6Rosi Bissinger7Mohamed Jemaà8Christos Stournaras9Ludger Schöls10Florian Lang11Department of Physiology I, University of TübingenGerman Center for Neurodegenerative DiseasesDepartment of Physiology I, University of TübingenDepartment of Physiology I, University of TübingenDepartment of Physiology I, University of TübingenDepartment of Physiology I, University of TübingenDepartment of Neurology and Hertie Institute for Clinical Brain Research, University of TübingenDepartment of Physiology I, University of TübingenDepartment of Physiology I, University of TübingenDepartment of Physiology I, University of TübingenGerman Center for Neurodegenerative DiseasesDepartment of Physiology I, University of TübingenAbstract Chorea-Acanthocytosis (ChAc), a neurodegenerative disorder, results from loss-of-function-mutations of chorein-encoding gene VPS13A. In tumour cells chorein up-regulates ORAI1, a Ca2+-channel accomplishing store operated Ca2+-entry (SOCE) upon stimulation by STIM1. Furthermore SOCE could be up-regulated by lithium. The present study explored whether SOCE impacts on neuron apoptosis. Cortical neurons were differentiated from induced pluripotent stem cells generated from fibroblasts of ChAc patients and healthy volunteers. ORAI1 and STIM1 transcript levels and protein abundance were estimated from qRT-PCR and Western blotting, respectively, cytosolic Ca2+-activity ([Ca2+]i) from Fura-2-fluorescence, as well as apoptosis from annexin-V-binding and propidium-iodide uptake determined by flow cytometry. As a result, ORAI1 and STIM1 transcript levels and protein abundance and SOCE were significantly smaller and the percentage apoptotic cells significantly higher in ChAc neurons than in control neurons. Lithium treatment (2 mM, 24 hours) increased significantly ORAI1 and STIM1 transcript levels and protein abundance, an effect reversed by inhibition of Serum & Glucocorticoid inducible Kinase 1. ORAI1 blocker 2-APB (50 µM, 24 hours) significantly decreased SOCE, markedly increased apoptosis and abrogated the anti-apoptotic effect of lithium. In conclusion, enhanced neuronal apoptosis in ChAc at least partially results from decreased ORAI1 expression and SOCE, which could be reversed by lithium treatment.https://doi.org/10.1038/s41598-017-06451-1
collection DOAJ
language English
format Article
sources DOAJ
author Lisann Pelzl
Stefan Hauser
Bhaeldin Elsir
Basma Sukkar
Itishri Sahu
Yogesh Singh
Philip Höflinger
Rosi Bissinger
Mohamed Jemaà
Christos Stournaras
Ludger Schöls
Florian Lang
spellingShingle Lisann Pelzl
Stefan Hauser
Bhaeldin Elsir
Basma Sukkar
Itishri Sahu
Yogesh Singh
Philip Höflinger
Rosi Bissinger
Mohamed Jemaà
Christos Stournaras
Ludger Schöls
Florian Lang
Lithium Sensitive ORAI1 Expression, Store Operated Ca2+ Entry and Suicidal Death of Neurons in Chorea-Acanthocytosis
Scientific Reports
author_facet Lisann Pelzl
Stefan Hauser
Bhaeldin Elsir
Basma Sukkar
Itishri Sahu
Yogesh Singh
Philip Höflinger
Rosi Bissinger
Mohamed Jemaà
Christos Stournaras
Ludger Schöls
Florian Lang
author_sort Lisann Pelzl
title Lithium Sensitive ORAI1 Expression, Store Operated Ca2+ Entry and Suicidal Death of Neurons in Chorea-Acanthocytosis
title_short Lithium Sensitive ORAI1 Expression, Store Operated Ca2+ Entry and Suicidal Death of Neurons in Chorea-Acanthocytosis
title_full Lithium Sensitive ORAI1 Expression, Store Operated Ca2+ Entry and Suicidal Death of Neurons in Chorea-Acanthocytosis
title_fullStr Lithium Sensitive ORAI1 Expression, Store Operated Ca2+ Entry and Suicidal Death of Neurons in Chorea-Acanthocytosis
title_full_unstemmed Lithium Sensitive ORAI1 Expression, Store Operated Ca2+ Entry and Suicidal Death of Neurons in Chorea-Acanthocytosis
title_sort lithium sensitive orai1 expression, store operated ca2+ entry and suicidal death of neurons in chorea-acanthocytosis
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2017-07-01
description Abstract Chorea-Acanthocytosis (ChAc), a neurodegenerative disorder, results from loss-of-function-mutations of chorein-encoding gene VPS13A. In tumour cells chorein up-regulates ORAI1, a Ca2+-channel accomplishing store operated Ca2+-entry (SOCE) upon stimulation by STIM1. Furthermore SOCE could be up-regulated by lithium. The present study explored whether SOCE impacts on neuron apoptosis. Cortical neurons were differentiated from induced pluripotent stem cells generated from fibroblasts of ChAc patients and healthy volunteers. ORAI1 and STIM1 transcript levels and protein abundance were estimated from qRT-PCR and Western blotting, respectively, cytosolic Ca2+-activity ([Ca2+]i) from Fura-2-fluorescence, as well as apoptosis from annexin-V-binding and propidium-iodide uptake determined by flow cytometry. As a result, ORAI1 and STIM1 transcript levels and protein abundance and SOCE were significantly smaller and the percentage apoptotic cells significantly higher in ChAc neurons than in control neurons. Lithium treatment (2 mM, 24 hours) increased significantly ORAI1 and STIM1 transcript levels and protein abundance, an effect reversed by inhibition of Serum & Glucocorticoid inducible Kinase 1. ORAI1 blocker 2-APB (50 µM, 24 hours) significantly decreased SOCE, markedly increased apoptosis and abrogated the anti-apoptotic effect of lithium. In conclusion, enhanced neuronal apoptosis in ChAc at least partially results from decreased ORAI1 expression and SOCE, which could be reversed by lithium treatment.
url https://doi.org/10.1038/s41598-017-06451-1
work_keys_str_mv AT lisannpelzl lithiumsensitiveorai1expressionstoreoperatedca2entryandsuicidaldeathofneuronsinchoreaacanthocytosis
AT stefanhauser lithiumsensitiveorai1expressionstoreoperatedca2entryandsuicidaldeathofneuronsinchoreaacanthocytosis
AT bhaeldinelsir lithiumsensitiveorai1expressionstoreoperatedca2entryandsuicidaldeathofneuronsinchoreaacanthocytosis
AT basmasukkar lithiumsensitiveorai1expressionstoreoperatedca2entryandsuicidaldeathofneuronsinchoreaacanthocytosis
AT itishrisahu lithiumsensitiveorai1expressionstoreoperatedca2entryandsuicidaldeathofneuronsinchoreaacanthocytosis
AT yogeshsingh lithiumsensitiveorai1expressionstoreoperatedca2entryandsuicidaldeathofneuronsinchoreaacanthocytosis
AT philiphoflinger lithiumsensitiveorai1expressionstoreoperatedca2entryandsuicidaldeathofneuronsinchoreaacanthocytosis
AT rosibissinger lithiumsensitiveorai1expressionstoreoperatedca2entryandsuicidaldeathofneuronsinchoreaacanthocytosis
AT mohamedjemaa lithiumsensitiveorai1expressionstoreoperatedca2entryandsuicidaldeathofneuronsinchoreaacanthocytosis
AT christosstournaras lithiumsensitiveorai1expressionstoreoperatedca2entryandsuicidaldeathofneuronsinchoreaacanthocytosis
AT ludgerschols lithiumsensitiveorai1expressionstoreoperatedca2entryandsuicidaldeathofneuronsinchoreaacanthocytosis
AT florianlang lithiumsensitiveorai1expressionstoreoperatedca2entryandsuicidaldeathofneuronsinchoreaacanthocytosis
_version_ 1724396434989514752