Title: | Exome sequencing identifies genes associated with sleep-related traits |
Journal: | Nature Human Behaviour |
Published: | 4 Jan 2024 |
Pubmed: | https://pubmed.ncbi.nlm.nih.gov/38177695/ |
DOI: | https://doi.org/10.1038/s41562-023-01785-5 |
Title: | Exome sequencing identifies genes associated with sleep-related traits |
Journal: | Nature Human Behaviour |
Published: | 4 Jan 2024 |
Pubmed: | https://pubmed.ncbi.nlm.nih.gov/38177695/ |
DOI: | https://doi.org/10.1038/s41562-023-01785-5 |
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Sleep is vital for human health and has a moderate heritability. Previous genome-wide association studies have limitations in capturing the role of rare genetic variants in sleep-related traits. Here we conducted a large-scale exome-wide association study of eight sleep-related traits (sleep duration, insomnia symptoms, chronotype, daytime sleepiness, daytime napping, ease of getting up in the morning, snoring and sleep apnoea) among 450,000 participants from UK Biobank. We identified 22 new genes associated with chronotype (ADGRL4, COL6A3, CLK4 and KRTAP3-3), daytime sleepiness (ST3GAL1 and ANKRD12), daytime napping (PLEKHM1, ANKRD12 and ZBTB21), snoring (WDR59) and sleep apnoea (13 genes). Notably, 20 of these genes were confirmed to be significantly associated with sleep disorders in the FinnGen cohort. Enrichment analysis revealed that these discovered genes were enriched in circadian rhythm and central nervous system neurons. Phenotypic association analysis showed that ANKRD12 was associated with cognition and inflammatory traits. Our results demonstrate the value of large-scale whole-exome analysis in understanding the genetic architecture of sleep-related traits and potential biological mechanisms.</p>
Application ID | Title |
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19542 | Identifying multi-level biomarkers and disease mechanisms for major mental disorders |
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