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Evidence of an interaction between FXR1 and GSK3β polymorphisms on levels of Negative Symptoms of Schizophrenia and their response to antipsychotics

BACKGROUND: Genome-Wide Association Studies (GWASs) have identified several genes associated with Schizophrenia (SCZ) and exponentially increased knowledge on the genetic basis of the disease. In addition, products of GWAS genes interact with neuronal factors coded by genes lacking association, such...

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Autores principales: Rampino, Antonio, Torretta, Silvia, Gelao, Barbara, Veneziani, Federica, Iacoviello, Matteo, Marakhovskaya, Aleksandra, Masellis, Rita, Andriola, Ileana, Sportelli, Leonardo, Pergola, Giulio, Minelli, Alessandra, Magri, Chiara, Gennarelli, Massimo, Vita, Antonio, Beaulieu, Jean Martin, Bertolino, Alessandro, Blasi, Giuseppe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cambridge University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8260562/
https://www.ncbi.nlm.nih.gov/pubmed/33866994
http://dx.doi.org/10.1192/j.eurpsy.2021.26
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author Rampino, Antonio
Torretta, Silvia
Gelao, Barbara
Veneziani, Federica
Iacoviello, Matteo
Marakhovskaya, Aleksandra
Masellis, Rita
Andriola, Ileana
Sportelli, Leonardo
Pergola, Giulio
Minelli, Alessandra
Magri, Chiara
Gennarelli, Massimo
Vita, Antonio
Beaulieu, Jean Martin
Bertolino, Alessandro
Blasi, Giuseppe
author_facet Rampino, Antonio
Torretta, Silvia
Gelao, Barbara
Veneziani, Federica
Iacoviello, Matteo
Marakhovskaya, Aleksandra
Masellis, Rita
Andriola, Ileana
Sportelli, Leonardo
Pergola, Giulio
Minelli, Alessandra
Magri, Chiara
Gennarelli, Massimo
Vita, Antonio
Beaulieu, Jean Martin
Bertolino, Alessandro
Blasi, Giuseppe
author_sort Rampino, Antonio
collection PubMed
description BACKGROUND: Genome-Wide Association Studies (GWASs) have identified several genes associated with Schizophrenia (SCZ) and exponentially increased knowledge on the genetic basis of the disease. In addition, products of GWAS genes interact with neuronal factors coded by genes lacking association, such that this interaction may confer risk for specific phenotypes of this brain disorder. In this regard, fragile X mental retardation syndrome-related 1 (FXR1) gene has been GWAS associated with SCZ. FXR1 protein is regulated by glycogen synthase kinase-3β (GSK3β), which has been implicated in pathophysiology of SCZ and response to antipsychotics (APs). rs496250 and rs12630592, two eQTLs (Expression Quantitative Trait Loci) of FXR1 and GSK3β, respectively, interact on emotion stability and amygdala/prefrontal cortex activity during emotion processing. These two phenotypes are associated with Negative Symptoms (NSs) of SCZ suggesting that the interaction between these SNPs may also affect NS severity and responsiveness to medication. METHODS: To test this hypothesis, in two independent samples of patients with SCZ, we investigated rs496250 by rs12630592 interaction on NS severity and response to APs. We also tested a putative link between APs administration and FXR1 expression, as already reported for GSK3β expression. RESULTS: We found that rs496250 and rs12630592 interact on NS severity. We also found evidence suggesting interaction of these polymorphisms also on response to APs. This interaction was not present when looking at positive and general psychopathology scores. Furthermore, chronic olanzapine administration led to a reduction of FXR1 expression in mouse frontal cortex. DISCUSSION: Our findings suggest that, like GSK3β, FXR1 is affected by APs while shedding new light on the role of the FXR1/GSK3β pathway for NSs of SCZ.
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spelling pubmed-82605622021-07-14 Evidence of an interaction between FXR1 and GSK3β polymorphisms on levels of Negative Symptoms of Schizophrenia and their response to antipsychotics Rampino, Antonio Torretta, Silvia Gelao, Barbara Veneziani, Federica Iacoviello, Matteo Marakhovskaya, Aleksandra Masellis, Rita Andriola, Ileana Sportelli, Leonardo Pergola, Giulio Minelli, Alessandra Magri, Chiara Gennarelli, Massimo Vita, Antonio Beaulieu, Jean Martin Bertolino, Alessandro Blasi, Giuseppe Eur Psychiatry Research Article BACKGROUND: Genome-Wide Association Studies (GWASs) have identified several genes associated with Schizophrenia (SCZ) and exponentially increased knowledge on the genetic basis of the disease. In addition, products of GWAS genes interact with neuronal factors coded by genes lacking association, such that this interaction may confer risk for specific phenotypes of this brain disorder. In this regard, fragile X mental retardation syndrome-related 1 (FXR1) gene has been GWAS associated with SCZ. FXR1 protein is regulated by glycogen synthase kinase-3β (GSK3β), which has been implicated in pathophysiology of SCZ and response to antipsychotics (APs). rs496250 and rs12630592, two eQTLs (Expression Quantitative Trait Loci) of FXR1 and GSK3β, respectively, interact on emotion stability and amygdala/prefrontal cortex activity during emotion processing. These two phenotypes are associated with Negative Symptoms (NSs) of SCZ suggesting that the interaction between these SNPs may also affect NS severity and responsiveness to medication. METHODS: To test this hypothesis, in two independent samples of patients with SCZ, we investigated rs496250 by rs12630592 interaction on NS severity and response to APs. We also tested a putative link between APs administration and FXR1 expression, as already reported for GSK3β expression. RESULTS: We found that rs496250 and rs12630592 interact on NS severity. We also found evidence suggesting interaction of these polymorphisms also on response to APs. This interaction was not present when looking at positive and general psychopathology scores. Furthermore, chronic olanzapine administration led to a reduction of FXR1 expression in mouse frontal cortex. DISCUSSION: Our findings suggest that, like GSK3β, FXR1 is affected by APs while shedding new light on the role of the FXR1/GSK3β pathway for NSs of SCZ. Cambridge University Press 2021-04-19 /pmc/articles/PMC8260562/ /pubmed/33866994 http://dx.doi.org/10.1192/j.eurpsy.2021.26 Text en © The Author(s), 2021. Published by Cambridge University Press on behalf of the European Psychiatric Association 2021 https://creativecommons.org/licenses/by-nc-nd/4.0/This is an Open Access article, distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives licence (http://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is unaltered and is properly cited. The written permission of Cambridge University Press must be obtained for commercial re-use or in order to create a derivative work.
spellingShingle Research Article
Rampino, Antonio
Torretta, Silvia
Gelao, Barbara
Veneziani, Federica
Iacoviello, Matteo
Marakhovskaya, Aleksandra
Masellis, Rita
Andriola, Ileana
Sportelli, Leonardo
Pergola, Giulio
Minelli, Alessandra
Magri, Chiara
Gennarelli, Massimo
Vita, Antonio
Beaulieu, Jean Martin
Bertolino, Alessandro
Blasi, Giuseppe
Evidence of an interaction between FXR1 and GSK3β polymorphisms on levels of Negative Symptoms of Schizophrenia and their response to antipsychotics
title Evidence of an interaction between FXR1 and GSK3β polymorphisms on levels of Negative Symptoms of Schizophrenia and their response to antipsychotics
title_full Evidence of an interaction between FXR1 and GSK3β polymorphisms on levels of Negative Symptoms of Schizophrenia and their response to antipsychotics
title_fullStr Evidence of an interaction between FXR1 and GSK3β polymorphisms on levels of Negative Symptoms of Schizophrenia and their response to antipsychotics
title_full_unstemmed Evidence of an interaction between FXR1 and GSK3β polymorphisms on levels of Negative Symptoms of Schizophrenia and their response to antipsychotics
title_short Evidence of an interaction between FXR1 and GSK3β polymorphisms on levels of Negative Symptoms of Schizophrenia and their response to antipsychotics
title_sort evidence of an interaction between fxr1 and gsk3β polymorphisms on levels of negative symptoms of schizophrenia and their response to antipsychotics
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8260562/
https://www.ncbi.nlm.nih.gov/pubmed/33866994
http://dx.doi.org/10.1192/j.eurpsy.2021.26
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