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A Large-Scale Genome-Wide Study of Gene-Sleep Duration Interactions for Blood Pressure in 811,405 Individuals from Diverse Populations.
Wang, Heming; Nagarajan, Pavithra; Winkler, Thomas; Bentley, Amy; Miller, Clint; Kraja, Aldi; Schwander, Karen; Lee, Songmi; Wang, Wenyi; Brown, Michael; Morrison, John; Giri, Ayush; O'Connell, Jeffrey; Bartz, Traci; de Las Fuentes, Lisa; Gudmundsdottir, Valborg; Guo, Xiuqing; Harris, Sarah; Huang, Zhijie; Kals, Mart; Kho, Minjung; Lefevre, Christophe; Luan, Jian'an; Lyytikäinen, Leo-Pekka; Mangino, Massimo; Milaneschi, Y; Palmer, Nicholette; Rao, Varun; Rauramaa, Rainer; Shen, Botong; Stadler, Stefan; Sun, Quan; Tang, Jingxian; Thériault, Sébastien; van der Graaf, Adriaan; van der Most, Peter; Wang, Yujie; Weiss, Stefan; Westerman, Kenneth; Yang, Qian; Yasuharu, Tabara; Zhao, Wei; Zhu, Wanying; Altschul, Drew; Ansari, Md Abu Yusuf; Anugu, Pramod; Argoty-Pantoja, Anna; Arzt, Michael; Aschard, Hugues; Attia, John.
Afiliação
  • Wang H; Brigham and Women's Hospital.
  • Bentley A; National Institutes of Health, NHGRI.
  • Brown M; The University of Texas Health Science Center at Houston.
  • de Las Fuentes L; Washington University School of Medicine.
  • Guo X; The Lundquist Institute.
  • Harris S; The University of Edinburgh.
  • Luan J; University of Cambridge.
  • Lyytikäinen LP; Fimlab Laboratories and Finnish Cardiovascular Research Center.
  • Mangino M; King's College London.
  • Milaneschi Y; VU University Medical Center.
  • Palmer N; Department of Genetics and Genomic Sciences, Icahn School of Medicine at Mount Sinai.
  • Sun Q; University of North Carolina, USA.
  • Weiss S; University Medicine Greifswald & University of Greifswald.
  • Zhao W; University of Michigan.
  • Aschard H; Institut Pasteur.
Res Sq ; 2024 Jul 17.
Article em En | MEDLINE | ID: mdl-39070651
ABSTRACT
Although both short and long sleep duration are associated with elevated hypertension risk, our understanding of their interplay with biological pathways governing blood pressure remains limited. To address this, we carried out genome-wide cross-population gene-by-short-sleep and long-sleep duration interaction analyses for three blood pressure traits (systolic, diastolic, and pulse pressure) in 811,405 individuals from diverse population groups. We discover 22 novel gene-sleep duration interaction loci for blood pressure, mapped to 23 genes. Investigating these genes' functional implications shed light on neurological, thyroidal, bone metabolism, and hematopoietic pathways that necessitate future investigation for blood pressure management that caters to sleep health lifestyle. Non-overlap between short sleep (12) and long sleep (10) interactions underscores the plausible nature of distinct influences of both sleep duration extremes in cardiovascular health. Several of our loci are specific towards a particular population background or sex, emphasizing the importance of addressing heterogeneity entangled in gene-environment interactions, when considering precision medicine design approaches for blood pressure management.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article