Genome-wide Regional Heritability Mapping Identifies a Locus Within the TOX2 Gene Associated With Major Depressive Disorder.

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Version: Final published version
Serval ID
serval:BIB_138C270D6D7E
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Genome-wide Regional Heritability Mapping Identifies a Locus Within the TOX2 Gene Associated With Major Depressive Disorder.
Journal
Biological psychiatry
Author(s)
Zeng Y., Navarro P., Shirali M., Howard D.M., Adams M.J., Hall L.S., Clarke T.K., Thomson P.A., Smith B.H., Murray A., Padmanabhan S., Hayward C., Boutin T., MacIntyre D.J., Lewis C.M., Wray N.R., Mehta D., Penninx BWJH, Milaneschi Y., Baune B.T., Air T., Hottenga J.J., Mbarek H., Castelao E., Pistis G., Schulze T.G., Streit F., Forstner A.J., Byrne E.M., Martin N.G., Breen G., Müller-Myhsok B., Lucae S., Kloiber S., Domenici E., Deary I.J., Porteous D.J., Haley C.S., McIntosh A.M.
Working group(s)
Major Depressive Disorder Working Group of the Psychiatric Genomics Consortium
ISSN
1873-2402 (Electronic)
ISSN-L
0006-3223
Publication state
Published
Issued date
01/09/2017
Peer-reviewed
Oui
Volume
82
Number
5
Pages
312-321
Language
english
Notes
Publication types: Journal Article
Publication Status: ppublish
Abstract
Major depressive disorder (MDD) is the second largest cause of global disease burden. It has an estimated heritability of 37%, but published genome-wide association studies have so far identified few risk loci. Haplotype-block-based regional heritability mapping (HRHM) estimates the localized genetic variance explained by common variants within haplotype blocks, integrating the effects of multiple variants, and may be more powerful for identifying MDD-associated genomic regions.
We applied HRHM to Generation Scotland: The Scottish Family Health Study, a large family- and population-based Scottish cohort (N = 19,896). Single-single nucleotide polymorphism (SNP) and haplotype-based association tests were used to localize the association signal within the regions identified by HRHM. Functional prediction was used to investigate the effect of MDD-associated SNPs within the regions.
A haplotype block across a 24-kb region within the TOX2 gene reached genome-wide significance in HRHM. Single-SNP- and haplotype-based association tests demonstrated that five of nine genotyped SNPs and two haplotypes within this block were significantly associated with MDD. The expression of TOX2 and a brain-specific long noncoding RNA RP1-269M15.3 in frontal cortex and nucleus accumbens basal ganglia, respectively, were significantly regulated by MDD-associated SNPs within this region. Both the regional heritability and single-SNP associations within this block were replicated in the UK-Ireland group of the most recent release of the Psychiatric Genomics Consortium (PGC), the PGC2-MDD (Major Depression Dataset). The SNP association was also replicated in a depressive symptom sample that shares some individuals with the PGC2-MDD.
This study highlights the value of HRHM for MDD and provides an important target within TOX2 for further functional studies.

Keywords
Genome-wide analyses, HRHM, Haplotype block, MDD, Regional heritability, TOX2
Pubmed
Web of science
Open Access
Yes
Create date
07/02/2017 10:37
Last modification date
20/08/2019 13:42
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