TY - JOUR
T1 - Upregulated heme biosynthesis increases obstructive sleep apnea severity
T2 - a pathway-based Mendelian randomization study
AU - TOPMed Sleep Traits Working Group
AU - Wang, Heming
AU - Kurniansyah, Nuzulul
AU - Cade, Brian E.
AU - Goodman, Matthew O.
AU - Chen, Han
AU - Gottlieb, Daniel J.
AU - Gharib, Sina A.
AU - Purcell, Shaun M.
AU - Lin, Xihong
AU - Saxena, Richa
AU - Zhu, Xiaofeng
AU - Durda, Peter
AU - Tracy, Russel
AU - Liu, Yongmei
AU - Taylor, Kent D.
AU - Johnson, W. Craig
AU - Gabriel, Stacey
AU - Smith, Joshua D.
AU - Aguet, François
AU - Ardlie, Kirstin
AU - Blackwell, Tom
AU - Reiner, Alexander P.
AU - Rotter, Jerome I.
AU - Rich, Stephen S.
AU - Ayas, Najib
AU - Burkardt, Deepika
AU - Cade, Brian
AU - Chen, Han
AU - Clarkson-Townsend, Danielle
AU - Dutta, Joyita
AU - Ekunwe, Lynette
AU - Floyd, Caitlin
AU - Goodman, Matthew
AU - Gottlieb, Daniel
AU - Granot-Hershkovitz, Einat
AU - Hale, Lauren
AU - Hanly, Patrick
AU - Heemann, Scott
AU - Hsiung, Chao
AU - Huang, Tianyi
AU - Justice, Anne
AU - Keenan, Brendan
AU - Lane, Jacqueline
AU - Liang, Jingjing
AU - Lin, Xihong
AU - Liu, Jiayan
AU - Lorincz-Comi, Noah
AU - Magalang, Ulysses
AU - Mazzotti, Diego R.
AU - Ochs-Balcom, Heather
N1 - Publisher Copyright:
© 2022, The Author(s).
PY - 2022/12
Y1 - 2022/12
N2 - Obstructive sleep apnea (OSA) is a common disorder associated with increased risk of cardiovascular disease and mortality. Iron and heme metabolism, implicated in ventilatory control and OSA comorbidities, was associated with OSA phenotypes in recent admixture mapping and gene enrichment analyses. However, its causal contribution was unclear. In this study, we performed pathway-level transcriptional Mendelian randomization (MR) analysis to investigate the causal relationships between iron and heme related pathways and OSA. In primary analysis, we examined the expression level of four iron/heme Reactome pathways as exposures and four OSA traits as outcomes using cross-tissue cis-eQTLs from the Genotype-Tissue Expression portal and published genome-wide summary statistics of OSA. We identify a significant putative causal association between up-regulated heme biosynthesis pathway with higher sleep time percentage of hypoxemia (p = 6.14 × 10–3). This association is supported by consistency of point estimates in one-sample MR in the Multi-Ethnic Study of Atherosclerosis using high coverage DNA and RNA sequencing data generated by the Trans-Omics for Precision Medicine project. Secondary analysis for 37 additional iron/heme Gene Ontology pathways did not reveal any significant causal associations. This study suggests a causal association between increased heme biosynthesis and OSA severity.
AB - Obstructive sleep apnea (OSA) is a common disorder associated with increased risk of cardiovascular disease and mortality. Iron and heme metabolism, implicated in ventilatory control and OSA comorbidities, was associated with OSA phenotypes in recent admixture mapping and gene enrichment analyses. However, its causal contribution was unclear. In this study, we performed pathway-level transcriptional Mendelian randomization (MR) analysis to investigate the causal relationships between iron and heme related pathways and OSA. In primary analysis, we examined the expression level of four iron/heme Reactome pathways as exposures and four OSA traits as outcomes using cross-tissue cis-eQTLs from the Genotype-Tissue Expression portal and published genome-wide summary statistics of OSA. We identify a significant putative causal association between up-regulated heme biosynthesis pathway with higher sleep time percentage of hypoxemia (p = 6.14 × 10–3). This association is supported by consistency of point estimates in one-sample MR in the Multi-Ethnic Study of Atherosclerosis using high coverage DNA and RNA sequencing data generated by the Trans-Omics for Precision Medicine project. Secondary analysis for 37 additional iron/heme Gene Ontology pathways did not reveal any significant causal associations. This study suggests a causal association between increased heme biosynthesis and OSA severity.
UR - https://www.scopus.com/pages/publications/85123904808
U2 - 10.1038/s41598-022-05415-4
DO - 10.1038/s41598-022-05415-4
M3 - Article
C2 - 35087136
AN - SCOPUS:85123904808
SN - 2045-2322
VL - 12
JO - Scientific Reports
JF - Scientific Reports
IS - 1
M1 - 1472
ER -