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Gene family information facilitates variant interpretation and identification of disease-associated genes in neurodevelopmental disorders.

Authors :
Lal D
May P
Perez-Palma E
Samocha KE
Kosmicki JA
Robinson EB
Møller RS
Krause R
Nürnberg P
Weckhuysen S
De Jonghe P
Guerrini R
Niestroj LM
Du J
Marini C
Ware JS
Kurki M
Gormley P
Tang S
Wu S
Biskup S
Poduri A
Neubauer BA
Koeleman BPC
Helbig KL
Weber YG
Helbig I
Majithia AR
Palotie A
Daly MJ
Source :
Genome medicine [Genome Med] 2020 Mar 17; Vol. 12 (1), pp. 28. Date of Electronic Publication: 2020 Mar 17.
Publication Year :
2020

Abstract

Background: Classifying pathogenicity of missense variants represents a major challenge in clinical practice during the diagnoses of rare and genetic heterogeneous neurodevelopmental disorders (NDDs). While orthologous gene conservation is commonly employed in variant annotation, approximately 80% of known disease-associated genes belong to gene families. The use of gene family information for disease gene discovery and variant interpretation has not yet been investigated on a genome-wide scale. We empirically evaluate whether paralog-conserved or non-conserved sites in human gene families are important in NDDs.<br />Methods: Gene family information was collected from Ensembl. Paralog-conserved sites were defined based on paralog sequence alignments; 10,068 NDD patients and 2078 controls were statistically evaluated for de novo variant burden in gene families.<br />Results: We demonstrate that disease-associated missense variants are enriched at paralog-conserved sites across all disease groups and inheritance models tested. We developed a gene family de novo enrichment framework that identified 43 exome-wide enriched gene families including 98 de novo variant carrying genes in NDD patients of which 28 represent novel candidate genes for NDD which are brain expressed and under evolutionary constraint.<br />Conclusion: This study represents the first method to incorporate gene family information into a statistical framework to interpret variant data for NDDs and to discover new NDD-associated genes.

Details

Language :
English
ISSN :
1756-994X
Volume :
12
Issue :
1
Database :
MEDLINE
Journal :
Genome medicine
Publication Type :
Academic Journal
Accession number :
32183904
Full Text :
https://doi.org/10.1186/s13073-020-00725-6