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Cadherin-13 is a critical regulator of GABAergic modulation in human stem-cell-derived neuronal networks

Activity in the healthy brain relies on a concerted interplay of excitation (E) and inhibition (I) via balanced synaptic communication between glutamatergic and GABAergic neurons. A growing number of studies imply that disruption of this E/I balance is a commonality in many brain disorders; however,...

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Autores principales: Mossink, Britt, van Rhijn, Jon-Ruben, Wang, Shan, Linda, Katrin, Vitale, Maria R., Zöller, Johanna E. M., van Hugte, Eline J. H., Bak, Jitske, Verboven, Anouk H. A., Selten, Martijn, Negwer, Moritz, Latour, Brooke L., van der Werf, Ilse, Keller, Jason M., Klein Gunnewiek, Teun M., Schoenmaker, Chantal, Oudakker, Astrid, Anania, Alessia, Jansen, Sophie, Lesch, Klaus-Peter, Frega, Monica, van Bokhoven, Hans, Schubert, Dirk, Nadif Kasri, Nael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8960401/
https://www.ncbi.nlm.nih.gov/pubmed/33972691
http://dx.doi.org/10.1038/s41380-021-01117-x
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author Mossink, Britt
van Rhijn, Jon-Ruben
Wang, Shan
Linda, Katrin
Vitale, Maria R.
Zöller, Johanna E. M.
van Hugte, Eline J. H.
Bak, Jitske
Verboven, Anouk H. A.
Selten, Martijn
Negwer, Moritz
Latour, Brooke L.
van der Werf, Ilse
Keller, Jason M.
Klein Gunnewiek, Teun M.
Schoenmaker, Chantal
Oudakker, Astrid
Anania, Alessia
Jansen, Sophie
Lesch, Klaus-Peter
Frega, Monica
van Bokhoven, Hans
Schubert, Dirk
Nadif Kasri, Nael
author_facet Mossink, Britt
van Rhijn, Jon-Ruben
Wang, Shan
Linda, Katrin
Vitale, Maria R.
Zöller, Johanna E. M.
van Hugte, Eline J. H.
Bak, Jitske
Verboven, Anouk H. A.
Selten, Martijn
Negwer, Moritz
Latour, Brooke L.
van der Werf, Ilse
Keller, Jason M.
Klein Gunnewiek, Teun M.
Schoenmaker, Chantal
Oudakker, Astrid
Anania, Alessia
Jansen, Sophie
Lesch, Klaus-Peter
Frega, Monica
van Bokhoven, Hans
Schubert, Dirk
Nadif Kasri, Nael
author_sort Mossink, Britt
collection PubMed
description Activity in the healthy brain relies on a concerted interplay of excitation (E) and inhibition (I) via balanced synaptic communication between glutamatergic and GABAergic neurons. A growing number of studies imply that disruption of this E/I balance is a commonality in many brain disorders; however, obtaining mechanistic insight into these disruptions, with translational value for the patient, has typically been hampered by methodological limitations. Cadherin-13 (CDH13) has been associated with autism and attention-deficit/hyperactivity disorder. CDH13 localizes at inhibitory presynapses, specifically of parvalbumin (PV) and somatostatin (SST) expressing GABAergic neurons. However, the mechanism by which CDH13 regulates the function of inhibitory synapses in human neurons remains unknown. Starting from human-induced pluripotent stem cells, we established a robust method to generate a homogenous population of SST and MEF2C (PV-precursor marker protein) expressing GABAergic neurons (iGABA) in vitro, and co-cultured these with glutamatergic neurons at defined E/I ratios on micro-electrode arrays. We identified functional network parameters that are most reliably affected by GABAergic modulation as such, and through alterations of E/I balance by reduced expression of CDH13 in iGABAs. We found that CDH13 deficiency in iGABAs decreased E/I balance by means of increased inhibition. Moreover, CDH13 interacts with Integrin-β1 and Integrin-β3, which play opposite roles in the regulation of inhibitory synaptic strength via this interaction. Taken together, this model allows for standardized investigation of the E/I balance in a human neuronal background and can be deployed to dissect the cell-type-specific contribution of disease genes to the E/I balance.
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spelling pubmed-89604012022-04-07 Cadherin-13 is a critical regulator of GABAergic modulation in human stem-cell-derived neuronal networks Mossink, Britt van Rhijn, Jon-Ruben Wang, Shan Linda, Katrin Vitale, Maria R. Zöller, Johanna E. M. van Hugte, Eline J. H. Bak, Jitske Verboven, Anouk H. A. Selten, Martijn Negwer, Moritz Latour, Brooke L. van der Werf, Ilse Keller, Jason M. Klein Gunnewiek, Teun M. Schoenmaker, Chantal Oudakker, Astrid Anania, Alessia Jansen, Sophie Lesch, Klaus-Peter Frega, Monica van Bokhoven, Hans Schubert, Dirk Nadif Kasri, Nael Mol Psychiatry Article Activity in the healthy brain relies on a concerted interplay of excitation (E) and inhibition (I) via balanced synaptic communication between glutamatergic and GABAergic neurons. A growing number of studies imply that disruption of this E/I balance is a commonality in many brain disorders; however, obtaining mechanistic insight into these disruptions, with translational value for the patient, has typically been hampered by methodological limitations. Cadherin-13 (CDH13) has been associated with autism and attention-deficit/hyperactivity disorder. CDH13 localizes at inhibitory presynapses, specifically of parvalbumin (PV) and somatostatin (SST) expressing GABAergic neurons. However, the mechanism by which CDH13 regulates the function of inhibitory synapses in human neurons remains unknown. Starting from human-induced pluripotent stem cells, we established a robust method to generate a homogenous population of SST and MEF2C (PV-precursor marker protein) expressing GABAergic neurons (iGABA) in vitro, and co-cultured these with glutamatergic neurons at defined E/I ratios on micro-electrode arrays. We identified functional network parameters that are most reliably affected by GABAergic modulation as such, and through alterations of E/I balance by reduced expression of CDH13 in iGABAs. We found that CDH13 deficiency in iGABAs decreased E/I balance by means of increased inhibition. Moreover, CDH13 interacts with Integrin-β1 and Integrin-β3, which play opposite roles in the regulation of inhibitory synaptic strength via this interaction. Taken together, this model allows for standardized investigation of the E/I balance in a human neuronal background and can be deployed to dissect the cell-type-specific contribution of disease genes to the E/I balance. Nature Publishing Group UK 2021-05-10 2022 /pmc/articles/PMC8960401/ /pubmed/33972691 http://dx.doi.org/10.1038/s41380-021-01117-x Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Mossink, Britt
van Rhijn, Jon-Ruben
Wang, Shan
Linda, Katrin
Vitale, Maria R.
Zöller, Johanna E. M.
van Hugte, Eline J. H.
Bak, Jitske
Verboven, Anouk H. A.
Selten, Martijn
Negwer, Moritz
Latour, Brooke L.
van der Werf, Ilse
Keller, Jason M.
Klein Gunnewiek, Teun M.
Schoenmaker, Chantal
Oudakker, Astrid
Anania, Alessia
Jansen, Sophie
Lesch, Klaus-Peter
Frega, Monica
van Bokhoven, Hans
Schubert, Dirk
Nadif Kasri, Nael
Cadherin-13 is a critical regulator of GABAergic modulation in human stem-cell-derived neuronal networks
title Cadherin-13 is a critical regulator of GABAergic modulation in human stem-cell-derived neuronal networks
title_full Cadherin-13 is a critical regulator of GABAergic modulation in human stem-cell-derived neuronal networks
title_fullStr Cadherin-13 is a critical regulator of GABAergic modulation in human stem-cell-derived neuronal networks
title_full_unstemmed Cadherin-13 is a critical regulator of GABAergic modulation in human stem-cell-derived neuronal networks
title_short Cadherin-13 is a critical regulator of GABAergic modulation in human stem-cell-derived neuronal networks
title_sort cadherin-13 is a critical regulator of gabaergic modulation in human stem-cell-derived neuronal networks
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8960401/
https://www.ncbi.nlm.nih.gov/pubmed/33972691
http://dx.doi.org/10.1038/s41380-021-01117-x
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