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The role of BDNF methylation and Val(66)Met in amygdala reactivity during emotion processing

Epigenetic alterations of the brain‐derived neurotrophic factor (BDNF) gene have been associated with psychiatric disorders in humans and with differences in amygdala BDNF mRNA levels in rodents. This human study aimed to investigate the relationship between the functional BDNF‐Val(66)Met polymorphi...

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Autores principales: Redlich, Ronny, Schneider, Ilona, Kerkenberg, Nicole, Opel, Nils, Bauhaus, Jonas, Enneking, Verena, Repple, Jonathan, Leehr, Elisabeth J., Grotegerd, Dominik, Kähler, Claas, Förster, Katharina, Dohm, Katharina, Meinert, Susanne, Hahn, Tim, Kugel, Harald, Schwarte, Kathrin, Schettler, Christiane, Domschke, Katharina, Arolt, Volker, Heindel, Walter, Baune, Bernhard T., Zhang, Weiqi, Hohoff, Christa, Dannlowski, Udo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7268057/
https://www.ncbi.nlm.nih.gov/pubmed/31617281
http://dx.doi.org/10.1002/hbm.24825
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author Redlich, Ronny
Schneider, Ilona
Kerkenberg, Nicole
Opel, Nils
Bauhaus, Jonas
Enneking, Verena
Repple, Jonathan
Leehr, Elisabeth J.
Grotegerd, Dominik
Kähler, Claas
Förster, Katharina
Dohm, Katharina
Meinert, Susanne
Hahn, Tim
Kugel, Harald
Schwarte, Kathrin
Schettler, Christiane
Domschke, Katharina
Arolt, Volker
Heindel, Walter
Baune, Bernhard T.
Zhang, Weiqi
Hohoff, Christa
Dannlowski, Udo
author_facet Redlich, Ronny
Schneider, Ilona
Kerkenberg, Nicole
Opel, Nils
Bauhaus, Jonas
Enneking, Verena
Repple, Jonathan
Leehr, Elisabeth J.
Grotegerd, Dominik
Kähler, Claas
Förster, Katharina
Dohm, Katharina
Meinert, Susanne
Hahn, Tim
Kugel, Harald
Schwarte, Kathrin
Schettler, Christiane
Domschke, Katharina
Arolt, Volker
Heindel, Walter
Baune, Bernhard T.
Zhang, Weiqi
Hohoff, Christa
Dannlowski, Udo
author_sort Redlich, Ronny
collection PubMed
description Epigenetic alterations of the brain‐derived neurotrophic factor (BDNF) gene have been associated with psychiatric disorders in humans and with differences in amygdala BDNF mRNA levels in rodents. This human study aimed to investigate the relationship between the functional BDNF‐Val(66)Met polymorphism, its surrounding DNA methylation in BDNF exon IX, amygdala reactivity to emotional faces, and personality traits. Healthy controls (HC, n = 189) underwent functional MRI during an emotional face‐matching task. Harm avoidance, novelty seeking and reward dependence were measured using the Tridimensional Personality Questionnaire (TPQ). Individual BDNF methylation profiles were ascertained and associated with several BDNF single nucleotide polymorphisms surrounding the BDNF‐Val(66)Met, amygdala reactivity, novelty seeking and harm avoidance. Higher BDNF methylation was associated with higher amygdala reactivity (x = 34, y = 0, z = −26, t ((166)) = 3.00, TFCE = 42.39, p ((FWE)) = .045), whereby the BDNF‐Val(66)Met genotype per se did not show any significant association with brain function. Furthermore, novelty seeking was negatively associated with BDNF methylation (r = −.19, p = .015) and amygdala reactivity (r = −.17, p = .028), while harm avoidance showed a trend for a positive association with BDNF methylation (r = .14, p = .066). The study provides first insights into the relationship among BDNF methylation, BDNF genotype, amygdala reactivity and personality traits in humans, highlighting the multidimensional relations among genetics, epigenetics, and neuronal functions. The present study suggests a possible involvement of epigenetic BDNF modifications in psychiatric disorders and related brain functions, whereby high BDNF methylation might reduce BDNF mRNA expression and upregulate amygdala reactivity.
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spelling pubmed-72680572020-06-12 The role of BDNF methylation and Val(66)Met in amygdala reactivity during emotion processing Redlich, Ronny Schneider, Ilona Kerkenberg, Nicole Opel, Nils Bauhaus, Jonas Enneking, Verena Repple, Jonathan Leehr, Elisabeth J. Grotegerd, Dominik Kähler, Claas Förster, Katharina Dohm, Katharina Meinert, Susanne Hahn, Tim Kugel, Harald Schwarte, Kathrin Schettler, Christiane Domschke, Katharina Arolt, Volker Heindel, Walter Baune, Bernhard T. Zhang, Weiqi Hohoff, Christa Dannlowski, Udo Hum Brain Mapp Research Articles Epigenetic alterations of the brain‐derived neurotrophic factor (BDNF) gene have been associated with psychiatric disorders in humans and with differences in amygdala BDNF mRNA levels in rodents. This human study aimed to investigate the relationship between the functional BDNF‐Val(66)Met polymorphism, its surrounding DNA methylation in BDNF exon IX, amygdala reactivity to emotional faces, and personality traits. Healthy controls (HC, n = 189) underwent functional MRI during an emotional face‐matching task. Harm avoidance, novelty seeking and reward dependence were measured using the Tridimensional Personality Questionnaire (TPQ). Individual BDNF methylation profiles were ascertained and associated with several BDNF single nucleotide polymorphisms surrounding the BDNF‐Val(66)Met, amygdala reactivity, novelty seeking and harm avoidance. Higher BDNF methylation was associated with higher amygdala reactivity (x = 34, y = 0, z = −26, t ((166)) = 3.00, TFCE = 42.39, p ((FWE)) = .045), whereby the BDNF‐Val(66)Met genotype per se did not show any significant association with brain function. Furthermore, novelty seeking was negatively associated with BDNF methylation (r = −.19, p = .015) and amygdala reactivity (r = −.17, p = .028), while harm avoidance showed a trend for a positive association with BDNF methylation (r = .14, p = .066). The study provides first insights into the relationship among BDNF methylation, BDNF genotype, amygdala reactivity and personality traits in humans, highlighting the multidimensional relations among genetics, epigenetics, and neuronal functions. The present study suggests a possible involvement of epigenetic BDNF modifications in psychiatric disorders and related brain functions, whereby high BDNF methylation might reduce BDNF mRNA expression and upregulate amygdala reactivity. John Wiley & Sons, Inc. 2019-10-15 /pmc/articles/PMC7268057/ /pubmed/31617281 http://dx.doi.org/10.1002/hbm.24825 Text en © 2019 The Authors. Human Brain Mapping published by Wiley Periodicals, Inc. 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 Research Articles
Redlich, Ronny
Schneider, Ilona
Kerkenberg, Nicole
Opel, Nils
Bauhaus, Jonas
Enneking, Verena
Repple, Jonathan
Leehr, Elisabeth J.
Grotegerd, Dominik
Kähler, Claas
Förster, Katharina
Dohm, Katharina
Meinert, Susanne
Hahn, Tim
Kugel, Harald
Schwarte, Kathrin
Schettler, Christiane
Domschke, Katharina
Arolt, Volker
Heindel, Walter
Baune, Bernhard T.
Zhang, Weiqi
Hohoff, Christa
Dannlowski, Udo
The role of BDNF methylation and Val(66)Met in amygdala reactivity during emotion processing
title The role of BDNF methylation and Val(66)Met in amygdala reactivity during emotion processing
title_full The role of BDNF methylation and Val(66)Met in amygdala reactivity during emotion processing
title_fullStr The role of BDNF methylation and Val(66)Met in amygdala reactivity during emotion processing
title_full_unstemmed The role of BDNF methylation and Val(66)Met in amygdala reactivity during emotion processing
title_short The role of BDNF methylation and Val(66)Met in amygdala reactivity during emotion processing
title_sort role of bdnf methylation and val(66)met in amygdala reactivity during emotion processing
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7268057/
https://www.ncbi.nlm.nih.gov/pubmed/31617281
http://dx.doi.org/10.1002/hbm.24825
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