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Cross-disorder risk gene CACNA1C differentially modulates susceptibility to psychiatric disorders during development and adulthood

Single-nucleotide polymorphisms (SNPs) in CACNA1C, the α1C subunit of the voltage-gated L-type calcium channel Ca(v)1.2, rank among the most consistent and replicable genetics findings in psychiatry and have been associated with schizophrenia, bipolar disorder and major depression. However, genetic...

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Autores principales: Dedic, N, Pöhlmann, M L, Richter, J S, Mehta, D, Czamara, D, Metzger, M W, Dine, J, Bedenk, B T, Hartmann, J, Wagner, K V, Jurik, A, Almli, L M, Lori, A, Moosmang, S, Hofmann, F, Wotjak, C T, Rammes, G, Eder, M, Chen, A, Ressler, K J, Wurst, W, Schmidt, M V, Binder, E B, Deussing, J M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5822460/
https://www.ncbi.nlm.nih.gov/pubmed/28696432
http://dx.doi.org/10.1038/mp.2017.133
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author Dedic, N
Pöhlmann, M L
Richter, J S
Mehta, D
Czamara, D
Metzger, M W
Dine, J
Bedenk, B T
Hartmann, J
Wagner, K V
Jurik, A
Almli, L M
Lori, A
Moosmang, S
Hofmann, F
Wotjak, C T
Rammes, G
Eder, M
Chen, A
Ressler, K J
Wurst, W
Schmidt, M V
Binder, E B
Deussing, J M
author_facet Dedic, N
Pöhlmann, M L
Richter, J S
Mehta, D
Czamara, D
Metzger, M W
Dine, J
Bedenk, B T
Hartmann, J
Wagner, K V
Jurik, A
Almli, L M
Lori, A
Moosmang, S
Hofmann, F
Wotjak, C T
Rammes, G
Eder, M
Chen, A
Ressler, K J
Wurst, W
Schmidt, M V
Binder, E B
Deussing, J M
author_sort Dedic, N
collection PubMed
description Single-nucleotide polymorphisms (SNPs) in CACNA1C, the α1C subunit of the voltage-gated L-type calcium channel Ca(v)1.2, rank among the most consistent and replicable genetics findings in psychiatry and have been associated with schizophrenia, bipolar disorder and major depression. However, genetic variants of complex diseases often only confer a marginal increase in disease risk, which is additionally influenced by the environment. Here we show that embryonic deletion of Cacna1c in forebrain glutamatergic neurons promotes the manifestation of endophenotypes related to psychiatric disorders including cognitive decline, impaired synaptic plasticity, reduced sociability, hyperactivity and increased anxiety. Additional analyses revealed that depletion of Cacna1c during embryonic development also increases the susceptibility to chronic stress, which suggest that Ca(v)1.2 interacts with the environment to shape disease vulnerability. Remarkably, this was not observed when Cacna1c was deleted in glutamatergic neurons during adulthood, where the later deletion even improved cognitive flexibility, strengthened synaptic plasticity and induced stress resilience. In a parallel gene × environment design in humans, we additionally demonstrate that SNPs in CACNA1C significantly interact with adverse life events to alter the risk to develop symptoms of psychiatric disorders. Overall, our results further validate Cacna1c as a cross-disorder risk gene in mice and humans, and additionally suggest a differential role for Ca(v)1.2 during development and adulthood in shaping cognition, sociability, emotional behavior and stress susceptibility. This may prompt the consideration for pharmacological manipulation of Ca(v)1.2 in neuropsychiatric disorders with developmental and/or stress-related origins.
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spelling pubmed-58224602018-02-23 Cross-disorder risk gene CACNA1C differentially modulates susceptibility to psychiatric disorders during development and adulthood Dedic, N Pöhlmann, M L Richter, J S Mehta, D Czamara, D Metzger, M W Dine, J Bedenk, B T Hartmann, J Wagner, K V Jurik, A Almli, L M Lori, A Moosmang, S Hofmann, F Wotjak, C T Rammes, G Eder, M Chen, A Ressler, K J Wurst, W Schmidt, M V Binder, E B Deussing, J M Mol Psychiatry Original Article Single-nucleotide polymorphisms (SNPs) in CACNA1C, the α1C subunit of the voltage-gated L-type calcium channel Ca(v)1.2, rank among the most consistent and replicable genetics findings in psychiatry and have been associated with schizophrenia, bipolar disorder and major depression. However, genetic variants of complex diseases often only confer a marginal increase in disease risk, which is additionally influenced by the environment. Here we show that embryonic deletion of Cacna1c in forebrain glutamatergic neurons promotes the manifestation of endophenotypes related to psychiatric disorders including cognitive decline, impaired synaptic plasticity, reduced sociability, hyperactivity and increased anxiety. Additional analyses revealed that depletion of Cacna1c during embryonic development also increases the susceptibility to chronic stress, which suggest that Ca(v)1.2 interacts with the environment to shape disease vulnerability. Remarkably, this was not observed when Cacna1c was deleted in glutamatergic neurons during adulthood, where the later deletion even improved cognitive flexibility, strengthened synaptic plasticity and induced stress resilience. In a parallel gene × environment design in humans, we additionally demonstrate that SNPs in CACNA1C significantly interact with adverse life events to alter the risk to develop symptoms of psychiatric disorders. Overall, our results further validate Cacna1c as a cross-disorder risk gene in mice and humans, and additionally suggest a differential role for Ca(v)1.2 during development and adulthood in shaping cognition, sociability, emotional behavior and stress susceptibility. This may prompt the consideration for pharmacological manipulation of Ca(v)1.2 in neuropsychiatric disorders with developmental and/or stress-related origins. Nature Publishing Group 2018 2017-07-11 /pmc/articles/PMC5822460/ /pubmed/28696432 http://dx.doi.org/10.1038/mp.2017.133 Text en Copyright © 2018 The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Original Article
Dedic, N
Pöhlmann, M L
Richter, J S
Mehta, D
Czamara, D
Metzger, M W
Dine, J
Bedenk, B T
Hartmann, J
Wagner, K V
Jurik, A
Almli, L M
Lori, A
Moosmang, S
Hofmann, F
Wotjak, C T
Rammes, G
Eder, M
Chen, A
Ressler, K J
Wurst, W
Schmidt, M V
Binder, E B
Deussing, J M
Cross-disorder risk gene CACNA1C differentially modulates susceptibility to psychiatric disorders during development and adulthood
title Cross-disorder risk gene CACNA1C differentially modulates susceptibility to psychiatric disorders during development and adulthood
title_full Cross-disorder risk gene CACNA1C differentially modulates susceptibility to psychiatric disorders during development and adulthood
title_fullStr Cross-disorder risk gene CACNA1C differentially modulates susceptibility to psychiatric disorders during development and adulthood
title_full_unstemmed Cross-disorder risk gene CACNA1C differentially modulates susceptibility to psychiatric disorders during development and adulthood
title_short Cross-disorder risk gene CACNA1C differentially modulates susceptibility to psychiatric disorders during development and adulthood
title_sort cross-disorder risk gene cacna1c differentially modulates susceptibility to psychiatric disorders during development and adulthood
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5822460/
https://www.ncbi.nlm.nih.gov/pubmed/28696432
http://dx.doi.org/10.1038/mp.2017.133
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