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A genome-wide survey and functional brain imaging study identify CTNNBL1 as a memory-related gene

Unbiased genome-wide screens combined with imaging data on brain function may identify novel molecular pathways related to human cognition. Here we performed a dense genome-wide screen to identify episodic memory-related gene variants. A genomic locus encoding the brain-expressed beta-catenin-like p...

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Autores principales: Papassotiropoulos, A, Stefanova, E, Vogler, C, Gschwind, L, Ackermann, S, Spalek, K, Rasch, B, Heck, A, Aerni, A, Hanser, E, Demougin, P, Huynh, K-D, Luechinger, R, Klarhöfer, M, Novakovic, I, Kostic, V, Boesiger, P, Scheffler, K, de Quervain, D J-F
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3554877/
https://www.ncbi.nlm.nih.gov/pubmed/22105620
http://dx.doi.org/10.1038/mp.2011.148
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author Papassotiropoulos, A
Stefanova, E
Vogler, C
Gschwind, L
Ackermann, S
Spalek, K
Rasch, B
Heck, A
Aerni, A
Hanser, E
Demougin, P
Huynh, K-D
Luechinger, R
Klarhöfer, M
Novakovic, I
Kostic, V
Boesiger, P
Scheffler, K
de Quervain, D J-F
author_facet Papassotiropoulos, A
Stefanova, E
Vogler, C
Gschwind, L
Ackermann, S
Spalek, K
Rasch, B
Heck, A
Aerni, A
Hanser, E
Demougin, P
Huynh, K-D
Luechinger, R
Klarhöfer, M
Novakovic, I
Kostic, V
Boesiger, P
Scheffler, K
de Quervain, D J-F
author_sort Papassotiropoulos, A
collection PubMed
description Unbiased genome-wide screens combined with imaging data on brain function may identify novel molecular pathways related to human cognition. Here we performed a dense genome-wide screen to identify episodic memory-related gene variants. A genomic locus encoding the brain-expressed beta-catenin-like protein 1 (CTNNBL1) was significantly (P=7 × 10(−8)) associated with verbal memory performance in a cognitively healthy cohort from Switzerland (n=1073) and was replicated in a second cohort from Serbia (n=524; P=0.003). Gene expression studies showed CTNNBL1 genotype-dependent differences in beta-catenin-like protein 1 mRNA levels in the human cortex. Functional magnetic resonance imaging in 322 subjects detected CTNNBL1 genotype-dependent differences in memory-related brain activations. Converging evidence from independent experiments and different methodological approaches suggests a role for CTNNBL1 in human memory.
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spelling pubmed-35548772013-01-25 A genome-wide survey and functional brain imaging study identify CTNNBL1 as a memory-related gene Papassotiropoulos, A Stefanova, E Vogler, C Gschwind, L Ackermann, S Spalek, K Rasch, B Heck, A Aerni, A Hanser, E Demougin, P Huynh, K-D Luechinger, R Klarhöfer, M Novakovic, I Kostic, V Boesiger, P Scheffler, K de Quervain, D J-F Mol Psychiatry Original Article Unbiased genome-wide screens combined with imaging data on brain function may identify novel molecular pathways related to human cognition. Here we performed a dense genome-wide screen to identify episodic memory-related gene variants. A genomic locus encoding the brain-expressed beta-catenin-like protein 1 (CTNNBL1) was significantly (P=7 × 10(−8)) associated with verbal memory performance in a cognitively healthy cohort from Switzerland (n=1073) and was replicated in a second cohort from Serbia (n=524; P=0.003). Gene expression studies showed CTNNBL1 genotype-dependent differences in beta-catenin-like protein 1 mRNA levels in the human cortex. Functional magnetic resonance imaging in 322 subjects detected CTNNBL1 genotype-dependent differences in memory-related brain activations. Converging evidence from independent experiments and different methodological approaches suggests a role for CTNNBL1 in human memory. Nature Publishing Group 2013-02 2011-11-22 /pmc/articles/PMC3554877/ /pubmed/22105620 http://dx.doi.org/10.1038/mp.2011.148 Text en Copyright © 2013 Macmillan Publishers Limited http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Original Article
Papassotiropoulos, A
Stefanova, E
Vogler, C
Gschwind, L
Ackermann, S
Spalek, K
Rasch, B
Heck, A
Aerni, A
Hanser, E
Demougin, P
Huynh, K-D
Luechinger, R
Klarhöfer, M
Novakovic, I
Kostic, V
Boesiger, P
Scheffler, K
de Quervain, D J-F
A genome-wide survey and functional brain imaging study identify CTNNBL1 as a memory-related gene
title A genome-wide survey and functional brain imaging study identify CTNNBL1 as a memory-related gene
title_full A genome-wide survey and functional brain imaging study identify CTNNBL1 as a memory-related gene
title_fullStr A genome-wide survey and functional brain imaging study identify CTNNBL1 as a memory-related gene
title_full_unstemmed A genome-wide survey and functional brain imaging study identify CTNNBL1 as a memory-related gene
title_short A genome-wide survey and functional brain imaging study identify CTNNBL1 as a memory-related gene
title_sort genome-wide survey and functional brain imaging study identify ctnnbl1 as a memory-related gene
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3554877/
https://www.ncbi.nlm.nih.gov/pubmed/22105620
http://dx.doi.org/10.1038/mp.2011.148
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