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Multi-ancestry genome-wide gene-sleep interactions identify novel loci for blood pressure

Authors
Heming Wang,Raymond Noordam
Brian Cade,Karen Schwander,Thomas Winkler,Jiwon Lee,Yun Sung,Amy Bentley,Alisa Manning,Hugues Aschard,Tuomas Kilpeläinen,Marjan Ilkov,M. Brown,Andréa Horimoto,Melissa Richard,Traci Bartz,Dina Vojinović,Elise Lim,Jovia Nierenberg,Yongmei Liu,Kumaraswamynaidu Chitrala,Tuomo Rankinen,Solomon Musani,Nora Franceschini,Rainer Rauramaa,Maris Alver,Phyllis Zee,Sarah Harris,Peter Most,Ilja Nolte,Patricia Munroe,Nicholette Palmer,Brigitte Kühnel,Stefan Weiß,Wanqing Wen,Kelly Hall,Leo-Pekka Lyytikäinen,Jeff O’Connell,Guðný Eiríksdóttir,Lenore Launer,Paul Vries,Dan Arking,Han Chen,Eric Boerwinkle,José Krieger,Pamela Schreiner,Stephen Sidney,James Shikany,Kenneth Rice,Yii‐Der Chen,Sina Gharib,Joshua Bis,Annemarie Luik,M. Ikram,André Uitterlinden,Najaf Amin,Hanfei Xu,Daniel Levy,Jiang He,Kurt Lohman,Alan Zonderman,Treva Rice,Mario Sims,Gregory Wilson,Tamar Sofer,Steve Rich,Walter Palmas,Jie Yao,Xiuqing Guo,Jerome Rotter,Nienke Biermasz,Dennis Mook‐Kanamori,Lisa Martin,Ana Barac,Robert Wallace,Daniel Gottlieb,Pirjo Komulainen,Sami Heikkinen,Reedik Mägi,Lili Milani,Andres Metspalu,John Starr,Yuri Milaneschi,RJ Waken,Chuan Gao,Mélanie Waldenberger,Annette Peters,Konstantin Strauch,Thomas Meitinger,Till Roenneberg,Uwe Völker,Marcus Dörr,Xiao‐Ou Shu,Sutapa Mukherjee,David Hillman,Mika Kähönen,Lynne Wagenknecht,Christian Gieger,Hans Grabe,Zheng Wang,Stephen Rich,Lyle Palmer,Terho Lehtimäki,Vilmundur Guðnason,Alexandre Pereira,Myriam Fornage,Bruce Psaty,Michele Evans,Claude Bouchard,Ervin Fox,Charles Kooperberg,Xiaofeng Zhu,Timo Lakka,Tõnu Esko,Kari North,Ian Deary,Harold Snieder,Brenda Penninx,W. Gauderman,D. Rao,Susan Redline,Ching‐Ti Liu,Kumaraswamy Chitrala,Karin Leander,Leo‐Pekka Lyytikäinen,Tanika Kelly,Cornelia Duijn,Colin Palmer,Wei Zheng,Alanna Morrison
+128 authors
,Diana Heemst
Published
May 31, 2020
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Abstract

Abstract Long and short sleep duration are associated with elevated blood pressure (BP), possibly through effects on molecular pathways that influence neuroendocrine and vascular systems. To gain new insights into the genetic basis of sleep-related BP variation, we performed genome-wide gene by short or long sleep duration interaction analyses on four BP traits (systolic BP, diastolic BP, mean arterial pressure, and pulse pressure) across five ancestry groups using 1 degree of freedom (1df) interaction and 2df joint tests. Primary multi-ancestry analyses in 62,969 individuals in stage 1 identified 3 novel loci that were replicated in an additional 59,296 individuals in stage 2, including rs7955964 ( FIGNL2/ANKRD33 ) showing significant 1df interactions with long sleep duration and rs73493041 ( SNORA26/C9orf170 ) and rs10406644 ( KCTD15/LSM14A ) showing significant 1df interactions with short sleep duration (P int < 5×10 −8 ). Secondary ancestry-specific two-stage analyses and combined stage 1 and 2 analyses additionally identified 23 novel loci that need external replication, including 3 and 5 loci showing significant 1df interactions with long and short sleep duration, respectively (P int < 5×10 −8 ). Multiple genes mapped to our 26 novel loci have known functions in sleep-wake regulation, nervous and cardiometabolic systems. We also identified new gene by long sleep interactions near five known BP loci (≤1Mb) including NME7, FAM208A, MKLN1, CEP164 , and RGL3/ELAVL3 (P int < 5×10 −8 ). This study indicates that sleep and primary mechanisms regulating BP may interact to elevate BP level, suggesting novel insights into sleep-related BP regulation.

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