A Large-Scale Genome-Wide Gene-Sleep Interaction Study in 732,564 Participants Identifies Lipid Loci Explaining Sleep-Associated Lipid Disturbances
Noordam, R.; Wang, W.; Nagarajan, P.; Wang, H.; Brown, M. R.; Bentley, A. R.; Hui, Q.; Kraja, A. T.; Morrison, J. L.; O'Connel, J. R.; Lee, S.; Schwander, K.; Bartz, T. M.; de las Fuentes, L.; Feitosa, M. F.; Guo, X.; Hanfei, X.; Harris, S. E.; Huang, Z.; Kals, M.; Lefevre, C.; Mangino, M.; Milaneschi, Y.; van der Most, P.; Pacheco, N. L.; Palmer, N. D.; Rao, V.; Rauramaa, R.; Sun, Q.; Tabara, Y.; Vojinovic, D.; Wang, Y.; Weiss, S.; Yang, Q.; Zhao, W.; Zhu, W.; Abu Yusuf Ansari, M.; Aschard, H.; Anugu, P.; Assimes, T. L.; Attia, J.; Baker, L. D.; Ballantyne, C.; Bazzano, L.; Boerwinkle, E.; Ca
Show abstract
We performed large-scale genome-wide gene-sleep interaction analyses of lipid levels to identify novel genetic variants underpinning the biomolecular pathways of sleep-associated lipid disturbances and to suggest possible druggable targets. We collected data from 55 cohorts with a combined sample size of 732,564 participants (87% European ancestry) with data on lipid traits (high-density lipoprotein [HDL-c] and low-density lipoprotein [LDL-c] cholesterol and triglycerides [TG]). Short (STST) and long (LTST) total sleep time were defined by the extreme 20% of the age- and sex-standardized values within each cohort. Based on cohort-level summary statistics data, we performed meta-analyses for the one-degree of freedom tests of interaction and two-degree of freedom joint tests of the main and interaction effect. In the cross-population meta-analyses, the one-degree of freedom variant-sleep interaction test identified 10 loci (Pint<5.0e-9) not previously observed for lipids. Of interest, the ASPH locus (TG, LTST) is a target for aspartic and succinic acid metabolism previously shown to improve sleep and cardiovascular risk. The two-degree of freedom analyses identified an additional 7 loci that showed evidence for variant-sleep interaction (Pjoint<5.0e-9 in combination with Pint<6.6e-6). Of these, the SLC8A1 locus (TG, STST) has been considered a potential treatment target for reduction of ischemic damage after acute myocardial infarction. Collectively, the 17 (9 with STST; 8 with LTST) loci identified in this large-scale initiative provides evidence into the biomolecular mechanisms underpinning sleep-duration-associated changes in lipid levels. The identified druggable targets may contribute to the development of novel therapies for dyslipidemia in people with sleep disturbances.
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