TY - JOUR
T1 - Targeted Genome Sequencing Identifies Multiple Rare Variants in Caveolin-1 Associated with Obstructive Sleep Apnea
AU - TOPMed Sleep Working Group
AU - Liang, Jingjing
AU - Wang, Heming
AU - Cade, Brian E.
AU - Kurniansyah, Nuzulul
AU - He, Karen Y.
AU - Lee, Jiwon
AU - Sands, Scott A.
AU - Brody, Jennifer A.
AU - Chen, Han
AU - Gottlieb, Daniel J.
AU - Evans, Daniel S.
AU - Guo, Xiuqing
AU - Gharib, Sina A.
AU - Hale, Lauren
AU - Hillman, David R.
AU - Lutsey, Pamela L.
AU - Mukherjee, Sutapa
AU - Ochs-Balcom, Heather M.
AU - Palmer, Lyle J.
AU - Purcell, Shaun
AU - Saxena, Richa
AU - Patel, Sanjay R.
AU - Stone, Katie L.
AU - Tranah, Gregory J.
AU - Boerwinkle, Eric
AU - Lin, Xihong
AU - Liu, Yongmei
AU - Psaty, Bruce M.
AU - Vasan, Ramachandran S.
AU - Manichaikul, Ani
AU - Rich, Stephen S.
AU - Rotter, Jerome I.
AU - Sofer, Tamar
AU - Redline, Susan
AU - Zhu, Xiaofeng
N1 - Publisher Copyright:
Copyright © 2022 by the American Thoracic Society.
PY - 2022/11/1
Y1 - 2022/11/1
N2 - Rationale: Obstructive sleep apnea (OSA) is a common disorder associated with increased risk for cardiovascular disease, diabetes, and premature mortality. There is strong clinical and epidemiologic evidence supporting the importance of genetic factors influencing OSA but limited data implicating specific genes. Objectives: To search for rare variants contributing to OSA severity. Methods: Leveraging high-depth genomic sequencing data from the NHLBI Trans-Omics for Precision Medicine (TOPMed) program and imputed genotype data from multiple population-based studies, we performed linkage analysis in the CFS (Cleveland Family Study), followed by multistage gene-based association analyses in independent cohorts for apnea–hypopnea index (AHI) in a total of 7,708 individuals of European ancestry. Measurements and Main Results: Linkage analysis in the CFS identified a suggestive linkage peak on chromosome 7q31 (LOD = 2.31). Gene-based analysis identified 21 noncoding rare variants in CAV1 (Caveolin-1) associated with lower AHI after accounting for multiple comparisons (P = 7.4 3 1028). These noncoding variants together significantly contributed to the linkage evidence (P, 1023). Follow-up analysis revealed significant associations between these variants and increased CAV1 expression, and increased CAV1 expression in peripheral monocytes was associated with lower AHI (P = 0.024) and higher minimum overnight oxygen saturation (P = 0.007). Conclusions: Rare variants in CAV1, a membrane-scaffolding protein essential in multiple cellular and metabolic functions, are associated with higher CAV1 gene expression and lower OSA severity, suggesting a novel target for modulating OSA severity.
AB - Rationale: Obstructive sleep apnea (OSA) is a common disorder associated with increased risk for cardiovascular disease, diabetes, and premature mortality. There is strong clinical and epidemiologic evidence supporting the importance of genetic factors influencing OSA but limited data implicating specific genes. Objectives: To search for rare variants contributing to OSA severity. Methods: Leveraging high-depth genomic sequencing data from the NHLBI Trans-Omics for Precision Medicine (TOPMed) program and imputed genotype data from multiple population-based studies, we performed linkage analysis in the CFS (Cleveland Family Study), followed by multistage gene-based association analyses in independent cohorts for apnea–hypopnea index (AHI) in a total of 7,708 individuals of European ancestry. Measurements and Main Results: Linkage analysis in the CFS identified a suggestive linkage peak on chromosome 7q31 (LOD = 2.31). Gene-based analysis identified 21 noncoding rare variants in CAV1 (Caveolin-1) associated with lower AHI after accounting for multiple comparisons (P = 7.4 3 1028). These noncoding variants together significantly contributed to the linkage evidence (P, 1023). Follow-up analysis revealed significant associations between these variants and increased CAV1 expression, and increased CAV1 expression in peripheral monocytes was associated with lower AHI (P = 0.024) and higher minimum overnight oxygen saturation (P = 0.007). Conclusions: Rare variants in CAV1, a membrane-scaffolding protein essential in multiple cellular and metabolic functions, are associated with higher CAV1 gene expression and lower OSA severity, suggesting a novel target for modulating OSA severity.
KW - apnea–hypopnea index
KW - caveolin-1
KW - genetic association analysis
KW - obstructive sleep apnea
KW - rare variants
UR - https://www.scopus.com/pages/publications/85142400880
U2 - 10.1164/rccm.202203-0618OC
DO - 10.1164/rccm.202203-0618OC
M3 - Article
C2 - 35822943
AN - SCOPUS:85142400880
SN - 1073-449X
VL - 206
SP - 1271
EP - 1280
JO - American Journal of Respiratory and Critical Care Medicine
JF - American Journal of Respiratory and Critical Care Medicine
IS - 10
ER -