4.5 Article

Functional variants in the chromosome 4q21 locus contribute to allergic rhinitis risk by modulating the expression of N-acylethanolamine acid amidase

期刊

CLINICAL AND EXPERIMENTAL ALLERGY
卷 52, 期 1, 页码 127-136

出版社

WILEY
DOI: 10.1111/cea.13883

关键词

basic mechanisms; CXCL9; genetics; NAAA; rhinitis; SDAD1

资金

  1. Singapore Ministry of Education Academic Research Fund
  2. Singapore Immunology Network (SIgN)
  3. National Medical Research Council (NMRC) (Singapore)
  4. Biomedical Research Council (BMRC) (Singapore)
  5. Agency for Science Technology and Research (A*STAR) (Singapore)
  6. [N-154-000-038-001]
  7. [R-154-000-191-112]
  8. [R-154-000-404-112]
  9. [R-154-000-553-112]
  10. [R-154-000-565-112]
  11. [R-154-000-630-112]
  12. [R-154-000-A08-592]
  13. [R-154-000-A27-597]
  14. [R-154-000-A91-592]
  15. [R-154-000-A95-592]
  16. [R154-000-B99-114]
  17. [BMRC/01/1/21/18/077]
  18. [BMRC/04/1/21/19/315]
  19. [BMRC/APG2013/108]
  20. [SIgN-06-006]
  21. [SIgN-08-020]
  22. [NMRC/1150/2008]
  23. [H17/01/a0/008]

向作者/读者索取更多资源

This study identified significant associations between single nucleotide polymorphisms (SNPs) in the chromosome 4q21 region and NAAA gene expression levels at both gene and protein levels, confirming their functional role in allergic rhinitis (AR) susceptibility. The findings provide a better understanding of the genetic mechanisms contributing to the pathogenesis of AR.
Background Previous haplotype-based association studies identified chromosome 4q21 as an allergic rhinitis (AR) susceptibility locus; however, the functional role of 4q21 single nucleotide polymorphisms (SNPs) on AR risk remains unclear. Objective To investigate the functional effect of 4q21 SNPs on AR risk by conducting cohort-based functional genomics and genetic association analyses. Methods The associations between 4q21 SNPs and mRNA expression levels of three 4q21-associated genes (SDAD1, NAAA and CXCL9) in peripheral blood mononuclear cells (PBMCs) were assessed in a Singapore/Malaysia Chinese cohort (n = 291). Exon expression levels of these genes in PBMCs were tested against the tag-SNP genotypes in a Singapore Chinese cohort (n = 30). Serum protein levels of these genes were assessed with tag-SNP genotypes in a Singapore Chinese cohort (n = 193). SNP functions were characterized through luciferase assay. In a Singapore Chinese cohort (n = 1794), we confirmed the associations between functional SNPs and AR. Results Forty SNPs in 4q21 showed significant associations with NAAA (but not SDAD1 or CXCL9) mRNA expression in PBMCs, of which were tagged by two tag-SNPs, rs17001237 and rs2242470. Both tag-SNPs rs2242470 and rs12648687 (a proxy for rs17001237) were also significantly associated with the expression level of NAAA exon 1. Tag-SNP rs12648687 was correlated with serum NAAA level. A four promoter SNPs-haplotype tagged by rs17001237 influenced the NAAA promoter activity in HEK293T cells. Lastly, individuals carrying the risk allele A of rs12648687 exhibited significantly higher AR risk in the Singapore Chinese population. Conclusions & Clinical Relevance The rs17001237 linkage set SNPs in the 4q21 locus are associated with NAAA expression at both gene and protein levels ex vivo, have functional consequences in vitro and contribute to AR susceptibility in our study population. Our findings provided a better understanding of the genetic mechanism that contributes to AR pathogenesis.

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