| Literature DB >> 31668705 |
Jingjing Liang1, Brian E Cade2, Karen Y He1, Heming Wang2, Jiwon Lee3, Tamar Sofer4, Stephanie Williams4, Ruitong Li4, Han Chen5, Daniel J Gottlieb6, Daniel S Evans7, Xiuqing Guo8, Sina A Gharib9, Lauren Hale10, David R Hillman11, Pamela L Lutsey12, Sutapa Mukherjee13, Heather M Ochs-Balcom14, Lyle J Palmer15, Jessica Rhodes16, Shaun Purcell2, Sanjay R Patel17, Richa Saxena18, Katie L Stone7, Weihong Tang19, Gregory J Tranah7, Eric Boerwinkle20, Xihong Lin21, Yongmei Liu22, Bruce M Psaty23, Ramachandran S Vasan24, Michael H Cho25, Ani Manichaikul26, Edwin K Silverman25, R Graham Barr27, Stephen S Rich28, Jerome I Rotter8, James G Wilson29, Susan Redline30, Xiaofeng Zhu31.
Abstract
Average arterial oxyhemoglobin saturation during sleep (AvSpO2S) is a clinically relevant measure of physiological stress associated with sleep-disordered breathing, and this measure predicts incident cardiovascular disease and mortality. Using high-depth whole-genome sequencing data from the National Heart, Lung, and Blood Institute (NHLBI) Trans-Omics for Precision Medicine (TOPMed) project and focusing on genes with linkage evidence on chromosome 8p23,1,2 we observed that six coding and 51 noncoding variants in a gene that encodes the GTPase-activating protein (DLC1) are significantly associated with AvSpO2S and replicated in independent subjects. The combined DLC1 association evidence of discovery and replication cohorts reaches genome-wide significance in European Americans (p = 7.9 × 10-7). A risk score for these variants, built on an independent dataset, explains 0.97% of the AvSpO2S variation and contributes to the linkage evidence. The 51 noncoding variants are enriched in regulatory features in a human lung fibroblast cell line and contribute to DLC1 expression variation. Mendelian randomization analysis using these variants indicates a significant causal effect of DLC1 expression in fibroblasts on AvSpO2S. Multiple sources of information, including genetic variants, gene expression, and methylation, consistently suggest that DLC1 is a gene associated with AvSpO2S.Entities:
Keywords: The Trans-Omics for Precision Medicine (TOPMed) program; arterial oxyhemoglobin saturation; linkage analysis; sleep-disordered breathing; whole-genome sequencing association analyses
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Year: 2019 PMID: 31668705 PMCID: PMC6849112 DOI: 10.1016/j.ajhg.2019.10.002
Source DB: PubMed Journal: Am J Hum Genet ISSN: 0002-9297 Impact factor: 11.025