Genetic underpinnings of affective temperaments: a pilot GWAS investigation identifies
a new genome-wide significant SNP for anxious temperament in ADGRB3 gene
(ÚNKP-20-4-II-SE-9) Támogató: Nemzeti Kutatási, Fejlesztési és Innovációs Hivatal
(UNKP-20-3-II-SE-51)
(2019-2.1.7-ERA-NET-2020-00005) Támogató: Nemzeti Kutatási, Fejlesztési és Innovációs
Hivatal
ERA PerMed(ERAPERMED2019-108)
Thematic Excellence Program (Semmelweis University)(2020-4.1.1.-TKP2020) Támogató:
Innovációs és Technológiai Minisztérium
(Janos Bolyai Research Fellowship) Támogató: MTA Bolyai pályázat
(Artificial Intelligence National Laboratory Programme) Támogató: NKFIH
Szakterületek:
Genetika és örökléstan
Pszichiátria
Y Although recently a large-sample GWASs identified significant loci in the background
of depression, the heterogeneity of the depressive phenotype and the lack of accurate
phenotyping hinders applicability of findings. We carried out a pilot GWAS with in-depth
phenotyping of affective temperaments, considered as subclinical manifestations and
high-risk states for affective disorders, in a general population sample of European
origin. Affective temperaments were measured by TEMPS-A. SNP-level association was
assessed by linear regression models, assuming an additive genetic effect, using PLINK1.9.
Gender, age, the first ten principal components (PCs) and the other four temperaments
were included in the regression models as covariates. SNP-level relevances (p-values)
were aggregated to gene level using the PEGASUS method(1). In SNP-based tests, a Bonferroni-corrected
significance threshold of p <= 5.0 x 10(-8) and a suggestive significance threshold
of p <= 1.0 x 10(-5), whereas in gene-based tests a Bonferroni-corrected significance
of 2.0 x 10(-6) and a suggestive significance of p <= 4.0 x 10(-4) was established.
To explore known functional effects of the most significant SNPs, FUMA v1.3.5 was
used. We identified 1 significant and 21 suggestively significant SNPs in ADGRB3,
expressed in the brain, for anxious temperament. Several other brain-relevant SNPs
and genes emerged at suggestive significance for the other temperaments. Functional
analyses reflecting effect on gene expression and participation in chromatin interactions
also pointed to several genes expressed in the brain with potentially relevant phenotypes
regulated by our top SNPs. Our findings need to be tested in larger GWA studies and
candidate gene analyses in well-phenotyped samples in relation to affective disorders
and related phenotypes.