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36 genes may reshape OCD, tic genetics
Whole-exome sequencing identifies large-effect risk genes across obsessive-compulsive and chronic tic disorders, with most supported by both conditions.
To identify high-confidence, large-effect risk genes contributing to obsessive-compulsive disorder (OCD) and chronic tic disorders (CTDs).
Approach:
Study Design: Utilized whole-exome sequencing data from 3,964 patients, including parent-proband trios and singletons, alongside control data from neurotypical sibling-parent trios and parents of European ancestry.
Genetic Analysis: Evaluated rare de novo and other rare protein-damaging variants for enrichment and conducted gene-level analyses to identify associated genes.
Key Findings:
Identified 12 high-confidence risk genes for OCD and 10 for CTDs.
A total of 36 genes met the high-confidence threshold in at least one analysis, a significant increase from 4 previously identified genes.
Approximately 7% to 8% of patients with OCD and/or CTDs carried at least one risk-contributing de novo damaging variant.
83% of the identified genes showed evidence from patients with both OCD and CTDs.
High-confidence genes showed increased postnatal expression in the cerebellum and prenatal enrichment across several brain regions.
Interpretation:
The findings indicate substantial genetic overlap between OCD and CTDs, with shared genetic and neurobiological features.
Limitations:
Incorporated previously reported samples, not designed as an independent replication.
Focused on rare coding variants, excluding other genetic variations like copy-number and noncoding variants.
Genotype-phenotype analyses limited by incomplete clinical information and small subgroup sizes.
Singleton analyses restricted to patients of European ancestry.
Conclusion:
The study expands the number of high-confidence, large-effect genes implicated in OCD and CTDs, highlighting the need for further research on the functional consequences of the mutations.