4.7 Article

Exome Genotyping Identifies Pleiotropic Variants Associated with Red Blood Cell Traits

期刊

AMERICAN JOURNAL OF HUMAN GENETICS
卷 99, 期 1, 页码 8-21

出版社

CELL PRESS
DOI: 10.1016/j.ajhg.2016.05.007

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资金

  1. Fonds de Recherche du Queebec-Santee (FRQS)
  2. Canadian Institute of Health Research (Banting-CIHR)
  3. Canadian Institute of Health Research (operating grant MOP) [123382]
  4. Canada Research Chair program
  5. NHLBI [R21 HL121422-02]
  6. NIH [DK060022]
  7. Yoshida Scholarship Foundation
  8. Research Scholar award from the Massachusetts General Hospital (MGH)
  9. Howard Goodman Fellowship from MGH
  10. Donovan Family Foundation [R01HL107816]
  11. Fondation Leducq
  12. MRC [MR/L01341X/1, MC_PC_U127561128] Funding Source: UKRI
  13. Medical Research Council [MR/K026992/1, MR/L01341X/1, MC_PC_U127561128] Funding Source: researchfish
  14. National Institute for Health Research [NF-SI-0611-10136] Funding Source: researchfish

向作者/读者索取更多资源

Red blood cell (RBC) traits are important heritable clinical biomarkers and modifiers of disease severity. To identify coding genetic variants associated with these traits, we conducted meta-analyses of seven RBC phenotypes in 130,273 multi-ethnic individuals from studies genotyped on an exome array. After conditional analyses and replication in 27,480 independent individuals, we identified 16 new RBC variants. We found low-frequency missense variants in MAP1A (rs55707100, minor allele frequency [MAF] = 3.3%, p = 2 x 10(-10) for hemoglobin [HGB]) and HNF4A (rs1800961, MAF = 2.4%, p < 3 x 10(-8) for hematocrit [HCT] and HGB). In African Americans, we identified a nonsense variant in CD36 associated with higher RBC distribution width (rs3211938, MAF = 8.7%, p = 7 x 10(-11)) and showed that it is associated with lower CD36 expression and strong allelic imbalance in ex vivo differentiated human erythroblasts. We also identified a rare missense variant in ALAS2 (rs201062903, MAF = 0.2%) associated with lower mean corpuscular volume and mean corpuscular hemoglobin (p < 8 x 10(-9)). Mendelian mutations in ALAS2 are a cause of sideroblastic anemia and erythropoietic protoporphyria. Gene-based testing highlighted three rare missense variants in PKLR, a gene mutated in Mendelian non-spherocytic hemolytic anemia, associated with HGB and HCT (SKAT p < 8 x 10(-7)). These rare, low-frequency, and common RBC variants showed pleiotropy, being also associated with platelet, white blood cell, and lipid traits. Our association results and functional annotation suggest the involvement of new genes in human erythropoiesis. We also confirm that rare and low-frequency variants play a role in the architecture of complex human traits, although their phenotypic effect is generally smaller than originally anticipated.

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