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Originalartikel | erschienen - Druck | peer reviewed

Multimodal imaging of a tescalcin (TESC)-regulating polymorphism (rs7294919)-specific effects on hippocampal gray matter structure.

2015 ; 20(3): 398 - 404






Bibliometrische Indikatoren



Zitierhäufigkeit nach WOS = 50

DOI = 10.1038/mp.2014.39

PubMed-ID = 24776739


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Beteiligte Einrichtungen


Abstract

In two large genome-wide association studies, an intergenic single-nucleotide polymorphism (SNP; rs7294919) involved in TESC gene regulation has been associated with hippocampus volume. Further characterization of neurobiological effects of the TESC gene is warranted using multimodal brain-wide structural and functional imaging. Voxel-based morphometry (VBM8) was used in two large, well-characterized samples of healthy individuals of West-European ancestry (Münster sample, N=503; SHIP-TREND, N=721) to analyze associations between rs7294919 and local gray matter volume. In subsamples, white matter fiber structure was investigated using diffusion tensor imaging (DTI) and limbic responsiveness was measured by means of functional magnetic resonance imaging (fMRI) during facial emotion processing (N=220 and N=264, respectively). Furthermore, gene x environment (G × E) interaction and gene x gene interaction with SNPs from genes previously found to be associated with hippocampal size (FKBP5, Reelin, IL-6, TNF-α, BDNF and 5-HTTLPR/rs25531) were explored. We demonstrated highly significant effects of rs7294919 on hippocampal gray matter volumes in both samples. In whole-brain analyses, no other brain areas except the hippocampal formation and adjacent temporal structures were associated with rs7294919. There were no genotype effects on DTI and fMRI results, including functional connectivity measures. No G × E interaction with childhood maltreatment was found in both samples. However, an interaction between rs7294919 and rs2299403 in the Reelin gene was found that withstood correction for multiple comparisons. We conclude that rs7294919 exerts highly robust and regionally specific effects on hippocampal gray matter structures, but not on other neuropsychiatrically relevant imaging markers. The biological interaction between TESC and RELN pointing to a neurodevelopmental origin of the observed findings warrants further mechanistic investigations.Molecular Psychiatry advance online publication, 29 April 2014; doi:10.1038/mp.2014.39.

Veröffentlicht in


Jahr 2015
Impact Factor (2015)
Volume 20
Issue 3
Seiten 398 - 404
Open Access nein
Peer reviewed ja
Artikelart Originalartikel
Artikelstatus erschienen - Druck
DOI 10.1038/mp.2014.39
PubMed-ID 24776739

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Beteiligte Departments

Community Medicine

Projekte

GANI_MED Teilprojekt PB1 1: Personalized Proteomics
GANI_MED Teilprojekt PB2 4: Kohorte 4 - Komorbiditäten beim Metabolischen Syndrom
GANI_MED Teilprojekt PB2 1: Kohorte 1 - Kardiovaskuläre Erkrankungen
DZHK: Deutsches Zentrum für Herzkreislaufforschung

Departments

Kardiovaskuläre Medizin

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