TY - JOUR
T1 - Multi-ancestry genome-wide association study of 4,069 children with glioma identifies 9p21.3 risk locus
AU - Foss-Skiftesvik, Jon
AU - Li, Shaobo
AU - Rosenbaum, Adam
AU - Hagen, Christian Munch
AU - Stoltze, Ulrik Kristoffer
AU - Ljungqvist, Sally
AU - Hjalmars, Ulf
AU - Schmiegelow, Kjeld
AU - Morimoto, Libby
AU - de Smith, Adam J
AU - Mathiasen, René
AU - Metayer, Catherine
AU - Hougaard, David
AU - Melin, Beatrice
AU - Walsh, Kyle M
AU - Bybjerg-Grauholm, Jonas
AU - Dahlin, Anna M
AU - Wiemels, Joseph L
N1 - © The Author(s) 2023. Published by Oxford University Press on behalf of the Society for Neuro-Oncology.
PY - 2023/9/5
Y1 - 2023/9/5
N2 - BACKGROUND: Although recent sequencing studies have revealed that 10% of childhood gliomas are caused by rare germline mutations, the role of common variants is undetermined and no genome-wide significant risk loci for pediatric central nervous system tumors have been identified to date.METHODS: Meta-analysis of 3 population-based genome-wide association studies comprising 4069 children with glioma and 8778 controls of multiple genetic ancestries. Replication was performed in a separate case-control cohort. Quantitative trait loci analyses and a transcriptome-wide association study were conducted to assess possible links with brain tissue expression across 18 628 genes.RESULTS: Common variants in CDKN2B-AS1 at 9p21.3 were significantly associated with astrocytoma, the most common subtype of glioma in children (rs573687, P-value of 6.974e-10, OR 1.273, 95% CI 1.179-1.374). The association was driven by low-grade astrocytoma (P-value of 3.815e-9) and exhibited unidirectional effects across all 6 genetic ancestries. For glioma overall, the association approached genome-wide significance (rs3731239, P-value of 5.411e-8), while no significant association was observed for high-grade tumors. Predicted decreased brain tissue expression of CDKN2B was significantly associated with astrocytoma (P-value of 8.090e-8).CONCLUSIONS: In this population-based genome-wide association study meta-analysis, we identify and replicate 9p21.3 (CDKN2B-AS1) as a risk locus for childhood astrocytoma, thereby establishing the first genome-wide significant evidence of common variant predisposition in pediatric neuro-oncology. We furthermore provide a functional basis for the association by showing a possible link to decreased brain tissue CDKN2B expression and substantiate that genetic susceptibility differs between low- and high-grade astrocytoma.
AB - BACKGROUND: Although recent sequencing studies have revealed that 10% of childhood gliomas are caused by rare germline mutations, the role of common variants is undetermined and no genome-wide significant risk loci for pediatric central nervous system tumors have been identified to date.METHODS: Meta-analysis of 3 population-based genome-wide association studies comprising 4069 children with glioma and 8778 controls of multiple genetic ancestries. Replication was performed in a separate case-control cohort. Quantitative trait loci analyses and a transcriptome-wide association study were conducted to assess possible links with brain tissue expression across 18 628 genes.RESULTS: Common variants in CDKN2B-AS1 at 9p21.3 were significantly associated with astrocytoma, the most common subtype of glioma in children (rs573687, P-value of 6.974e-10, OR 1.273, 95% CI 1.179-1.374). The association was driven by low-grade astrocytoma (P-value of 3.815e-9) and exhibited unidirectional effects across all 6 genetic ancestries. For glioma overall, the association approached genome-wide significance (rs3731239, P-value of 5.411e-8), while no significant association was observed for high-grade tumors. Predicted decreased brain tissue expression of CDKN2B was significantly associated with astrocytoma (P-value of 8.090e-8).CONCLUSIONS: In this population-based genome-wide association study meta-analysis, we identify and replicate 9p21.3 (CDKN2B-AS1) as a risk locus for childhood astrocytoma, thereby establishing the first genome-wide significant evidence of common variant predisposition in pediatric neuro-oncology. We furthermore provide a functional basis for the association by showing a possible link to decreased brain tissue CDKN2B expression and substantiate that genetic susceptibility differs between low- and high-grade astrocytoma.
KW - Astrocytoma/genetics
KW - Child
KW - Genetic Predisposition to Disease
KW - Genome-Wide Association Study
KW - Genotype
KW - Glioma/genetics
KW - Humans
KW - Polymorphism, Single Nucleotide
KW - RNA, Long Noncoding
UR - http://www.scopus.com/inward/record.url?scp=85151731119&partnerID=8YFLogxK
U2 - 10.1093/neuonc/noad042
DO - 10.1093/neuonc/noad042
M3 - Journal article
C2 - 36810956
SN - 1522-8517
VL - 25
SP - 1709
EP - 1720
JO - Neuro-Oncology
JF - Neuro-Oncology
IS - 9
ER -