全基因组关联研究
孟德尔随机化
生物
遗传学
睡眠(系统调用)
计时型
单核苷酸多态性
神经科学
昼夜节律
基因型
基因
遗传变异
计算机科学
操作系统
作者
Hassan S. Dashti,Samuel E. Jones,Andrew R. Wood,Jacqueline M. Lane,Vincent T. van Hees,Heming Wang,Jessica A. Rhodes,Yanwei Song,Krunal Patel,Simon Anderson,Robin N. Beaumont,David A. Bechtold,Jack Bowden,Brian E. Cade,Marta Garaulet,Simon D. Kyle,Max A. Little,Andrew Loudon,Annemarie I. Luik,Frank A. J. L. Scheer
标识
DOI:10.1038/s41467-019-08917-4
摘要
Abstract Sleep is an essential state of decreased activity and alertness but molecular factors regulating sleep duration remain unknown. Through genome-wide association analysis in 446,118 adults of European ancestry from the UK Biobank, we identify 78 loci for self-reported habitual sleep duration ( p < 5 × 10 −8 ; 43 loci at p < 6 × 10 −9 ). Replication is observed for PAX8 , VRK2 , and FBXL12/UBL5/PIN1 loci in the CHARGE study ( n = 47,180; p < 6.3 × 10 −4 ), and 55 signals show sign-concordant effects. The 78 loci further associate with accelerometer-derived sleep duration, daytime inactivity, sleep efficiency and number of sleep bouts in secondary analysis ( n = 85,499). Loci are enriched for pathways including striatum and subpallium development, mechanosensory response, dopamine binding, synaptic neurotransmission and plasticity, among others. Genetic correlation indicates shared links with anthropometric, cognitive, metabolic, and psychiatric traits and two-sample Mendelian randomization highlights a bidirectional causal link with schizophrenia. This work provides insights into the genetic basis for inter-individual variation in sleep duration implicating multiple biological pathways.
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