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Stimulation of L‐type calcium channels increases tyrosine hydroxylase and dopamine in ventral midbrain cells induced from somatic cells

Making high‐quality dopamine (DA)‐producing cells for basic biological or small molecule screening studies is critical for the development of novel therapeutics for disorders of the ventral midbrain. Currently, many ventral midbrain assays have low signal‐to‐noise ratio due to low levels of cellular...

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Autores principales: Jefri, Malvin, Bell, Scott, Peng, Huashan, Hettige, Nuwan, Maussion, Gilles, Soubannier, Vincent, Wu, Hanrong, Silveira, Heika, Theroux, Jean‐Francois, Moquin, Luc, Zhang, Xin, Aouabed, Zahia, Krishnan, Jeyashree, O'Leary, Liam A., Antonyan, Lilit, Zhang, Ying, McCarty, Vincent, Mechawar, Naguib, Gratton, Alain, Schuppert, Andreas, Durcan, Thomas M., Fon, Edward A., Ernst, Carl
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7214648/
https://www.ncbi.nlm.nih.gov/pubmed/32154672
http://dx.doi.org/10.1002/sctm.18-0180
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author Jefri, Malvin
Bell, Scott
Peng, Huashan
Hettige, Nuwan
Maussion, Gilles
Soubannier, Vincent
Wu, Hanrong
Silveira, Heika
Theroux, Jean‐Francois
Moquin, Luc
Zhang, Xin
Aouabed, Zahia
Krishnan, Jeyashree
O'Leary, Liam A.
Antonyan, Lilit
Zhang, Ying
McCarty, Vincent
Mechawar, Naguib
Gratton, Alain
Schuppert, Andreas
Durcan, Thomas M.
Fon, Edward A.
Ernst, Carl
author_facet Jefri, Malvin
Bell, Scott
Peng, Huashan
Hettige, Nuwan
Maussion, Gilles
Soubannier, Vincent
Wu, Hanrong
Silveira, Heika
Theroux, Jean‐Francois
Moquin, Luc
Zhang, Xin
Aouabed, Zahia
Krishnan, Jeyashree
O'Leary, Liam A.
Antonyan, Lilit
Zhang, Ying
McCarty, Vincent
Mechawar, Naguib
Gratton, Alain
Schuppert, Andreas
Durcan, Thomas M.
Fon, Edward A.
Ernst, Carl
author_sort Jefri, Malvin
collection PubMed
description Making high‐quality dopamine (DA)‐producing cells for basic biological or small molecule screening studies is critical for the development of novel therapeutics for disorders of the ventral midbrain. Currently, many ventral midbrain assays have low signal‐to‐noise ratio due to low levels of cellular DA and the rate‐limiting enzyme of DA synthesis, tyrosine hydroxylase (TH), hampering discovery efforts. Using intensively characterized ventral midbrain cells derived from human skin, which demonstrate calcium pacemaking activity and classical electrophysiological properties, we show that an L‐type calcium agonist can significantly increase TH protein levels and DA content and release. Live calcium imaging suggests that it is the immediate influx of calcium occurring simultaneously in all cells that drives this effect. Genome‐wide expression profiling suggests that L‐type calcium channel stimulation has a significant effect on specific genes related to DA synthesis and affects expression of L‐type calcium receptor subunits from the CACNA1 and CACNA2D families. Together, our findings provide an advance in the ability to increase DA and TH levels to improve the accuracy of disease modeling and small molecule screening for disorders of the ventral midbrain, including Parkinson's disease.
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spelling pubmed-72146482020-05-13 Stimulation of L‐type calcium channels increases tyrosine hydroxylase and dopamine in ventral midbrain cells induced from somatic cells Jefri, Malvin Bell, Scott Peng, Huashan Hettige, Nuwan Maussion, Gilles Soubannier, Vincent Wu, Hanrong Silveira, Heika Theroux, Jean‐Francois Moquin, Luc Zhang, Xin Aouabed, Zahia Krishnan, Jeyashree O'Leary, Liam A. Antonyan, Lilit Zhang, Ying McCarty, Vincent Mechawar, Naguib Gratton, Alain Schuppert, Andreas Durcan, Thomas M. Fon, Edward A. Ernst, Carl Stem Cells Transl Med Pluripotent Stem Cells Making high‐quality dopamine (DA)‐producing cells for basic biological or small molecule screening studies is critical for the development of novel therapeutics for disorders of the ventral midbrain. Currently, many ventral midbrain assays have low signal‐to‐noise ratio due to low levels of cellular DA and the rate‐limiting enzyme of DA synthesis, tyrosine hydroxylase (TH), hampering discovery efforts. Using intensively characterized ventral midbrain cells derived from human skin, which demonstrate calcium pacemaking activity and classical electrophysiological properties, we show that an L‐type calcium agonist can significantly increase TH protein levels and DA content and release. Live calcium imaging suggests that it is the immediate influx of calcium occurring simultaneously in all cells that drives this effect. Genome‐wide expression profiling suggests that L‐type calcium channel stimulation has a significant effect on specific genes related to DA synthesis and affects expression of L‐type calcium receptor subunits from the CACNA1 and CACNA2D families. Together, our findings provide an advance in the ability to increase DA and TH levels to improve the accuracy of disease modeling and small molecule screening for disorders of the ventral midbrain, including Parkinson's disease. John Wiley & Sons, Inc. 2020-03-10 /pmc/articles/PMC7214648/ /pubmed/32154672 http://dx.doi.org/10.1002/sctm.18-0180 Text en © 2020 The Authors. stem cells translational medicine published by Wiley Periodicals, Inc. on behalf of AlphaMed Press This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Pluripotent Stem Cells
Jefri, Malvin
Bell, Scott
Peng, Huashan
Hettige, Nuwan
Maussion, Gilles
Soubannier, Vincent
Wu, Hanrong
Silveira, Heika
Theroux, Jean‐Francois
Moquin, Luc
Zhang, Xin
Aouabed, Zahia
Krishnan, Jeyashree
O'Leary, Liam A.
Antonyan, Lilit
Zhang, Ying
McCarty, Vincent
Mechawar, Naguib
Gratton, Alain
Schuppert, Andreas
Durcan, Thomas M.
Fon, Edward A.
Ernst, Carl
Stimulation of L‐type calcium channels increases tyrosine hydroxylase and dopamine in ventral midbrain cells induced from somatic cells
title Stimulation of L‐type calcium channels increases tyrosine hydroxylase and dopamine in ventral midbrain cells induced from somatic cells
title_full Stimulation of L‐type calcium channels increases tyrosine hydroxylase and dopamine in ventral midbrain cells induced from somatic cells
title_fullStr Stimulation of L‐type calcium channels increases tyrosine hydroxylase and dopamine in ventral midbrain cells induced from somatic cells
title_full_unstemmed Stimulation of L‐type calcium channels increases tyrosine hydroxylase and dopamine in ventral midbrain cells induced from somatic cells
title_short Stimulation of L‐type calcium channels increases tyrosine hydroxylase and dopamine in ventral midbrain cells induced from somatic cells
title_sort stimulation of l‐type calcium channels increases tyrosine hydroxylase and dopamine in ventral midbrain cells induced from somatic cells
topic Pluripotent Stem Cells
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7214648/
https://www.ncbi.nlm.nih.gov/pubmed/32154672
http://dx.doi.org/10.1002/sctm.18-0180
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