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  4. A genome-wide association study suggests novel loci associated with a Schizophrenia-related brain-based phenotype
 
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2013
Journal Article
Title

A genome-wide association study suggests novel loci associated with a Schizophrenia-related brain-based phenotype

Abstract
Patients with schizophrenia and their siblings typically show subtle changes of brain structures, such as a reduction of hippocampal volume. Hippocampal volume is heritable, may explain a variety of cognitive symptoms of schizophrenia and is thus considered an intermediate phenotype for this mental illness. The aim of our analyses was to identify single-nucleotide polymorphisms (SNP) related to hippocampal volume without making prior assumptions about possible candidate genes. In this study, we combined genetics, imaging and neuropsychological data obtained from the Mind Clinical Imaging Consortium study of schizophrenia (n = 328). A total of 743,591 SNPs were tested for association with hippocampal volume in a genome-wide association study. Gene expression profiles of human hippocampal tissue were investigated for gene regions of significantly associated SNPs. None of the genetic markers reached genome-wide significance. However, six highly correlated SNPs (rs4808611, rs35686037, rs12982178, rs1042178, rs10406920, rs8170) on chromosome 19p13.11, located within or in close proximity to the genes NR2F6, USHBP1, and BABAM1, as well as four SNPs in three other genomic regions (chromosome 1, 2 and 10) had p-values between 6.75×10−6 and 8.3×10−7. Using existing data of a very recently published GWAS of hippocampal volume and additional data of a multicentre study in a large cohort of adolescents of European ancestry, we found supporting evidence for our results. Furthermore, allelic differences in rs4808611 and rs8170 were highly associated with differential mRNA expression in the cis-acting region. Associations with memory functioning indicate a possible functional importance of the identified risk variants. Our findings provide new insights into the genetic architecture of a brain structure closely linked to schizophrenia. In silico replication, mRNA expression and cognitive data provide additional support for the relevance of our findings. Identification of causal variants and their functional effects may unveil yet unknown players in the neurodevelopment and the pathogenesis of neuropsychiatric disorders.
Author(s)
Hass, Johanna
Universität Dresden
Walton, Esther
Universität Dresden
Kirsten, Holger
Fraunhofer-Institut für Zelltherapie und Immunologie IZI  
Liu, Jingyu
University of New Mexico
Priebe, Lutz
Universität Bonn
Wolf, Christiane
Max-Planck-Institut für Psychiatrie, München
Karbalai, Nazanin
Max-Planck-Institut für Psychiatrie
Gollub, Randy
Massachusetts General Hospital, Boston
White, Tonya
University of Minnesota, Minneapolis
Roessner, Veit
Universität Dresden
Müller, Kathrin U.
Universität Dresden
Paus, Tomas
University of Toronto
Smolka, Michael N.
Universität Dresden
Schumann, Gunter
King's College London
Scholz, Markus
Universität Leipzig
Cichon, Sven
Universität Bonn
Calhoun, Vince
University of New Mexico
Ehrlich, Stefan
Universität Dresden
Journal
PLoS one. Online journal  
Open Access
DOI
10.1371/journal.pone.0064872
Additional link
Full text
Language
English
Fraunhofer-Institut für Zelltherapie und Immunologie IZI  
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