4.6 Article

Six Novel Loci Associated with Circulating VEGF Levels Identified by a Meta-analysis of Genome-Wide Association Studies

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PLOS GENETICS
卷 12, 期 2, 页码 -

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PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pgen.1005874

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资金

  1. NIH [N01-AG012100]
  2. NIA
  3. Hjartavernd (the Icelandic Heart Association)
  4. Althingi (the Icelandic Parliament)
  5. Italian Ministry of Universities [PON03PE_00060_7]
  6. FP6 [Vasoplus-037254]
  7. Assessorato Ricerca Regione Campania
  8. Fondazione con il SUD [2011-PDR-13]
  9. Istituto Banco di Napoli-Fondazione
  10. National Heart, Lung, and Blood Institute [N01-HC-25195, HL-077477, HL093029, HL-K24-04334]
  11. Affymetrix, Inc [N02-HL-6 to 4278]
  12. Robert Dawson Evans Endowment of the Department of Medicine at Boston University School of Medicine
  13. Boston Medical Center
  14. National Institute of Neurological Disorders and Stroke [NS17950]
  15. National Institute of Aging [AG031287, AG08122, U0149505, AG033193, AG033040, P30AG013846]
  16. Italian Ministry of Education, University and Research [MERIT RBNE08NKH7_007]
  17. Uppsala University, Uppsala University Hospital
  18. Swedish Research Council for Infrastructures
  19. Swedish Research Council
  20. Swedish Heart-Lung Foundation
  21. Compagnia di San Paolo, Torino, Italy
  22. Fondazione Cariplo, Italy
  23. Telethon Italy
  24. Ministry of Health
  25. German Research Council [SFB- 1052]
  26. German Diabetes Association
  27. DHFD (Diabetes Hilfs- und Forschungsfonds Deutschland)
  28. Federal Ministry of Education and Research (BMBF), Germany [FKZ: 01EO1001]
  29. European Community [HEALTH-F4-2007-201413]
  30. INSERM
  31. Collaborative BioIntelligence Program
  32. Caisse Nationale d'Assurance Maladies des Travailleurs Salaries (CNAM)
  33. Institut National de la Sante et de la Recherche Medicale (INSERM)
  34. Region Lorraine
  35. Communaute Urbaine du Grand Nancy
  36. Henri Poincare University of Nancy I

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Vascular endothelial growth factor (VEGF) is an angiogenic and neurotrophic factor, secreted by endothelial cells, known to impact various physiological and disease processes from cancer to cardiovascular disease and to be pharmacologically modifiable. We sought to identify novel loci associated with circulating VEGF levels through a genome-wide association meta-analysis combining data from European-ancestry individuals and using a dense variant map from 1000 genomes imputation panel. Six discovery cohorts including 13,312 samples were analyzed, followed by in-silico and de-novo replication studies including an additional 2,800 individuals. A total of 10 genome-wide significant variants were identified at 7 loci. Four were novel loci (5q14.3, 10q21.3, 16q24.2 and 18q22.3) and the leading variants at these loci were rs114694170 (MEF2C, P = 6.79x10(-13)), rs74506613 (JMJD1C, P = 1.17x10(-19)), rs4782371 (ZFPM1, P = 1.59x10(-9)) and rs2639990 (ZADH2, P = 1.72x10(-8)), respectively. We also identified two new independent variants (rs34528081, VEGFA, P = 1.52x10(-18); rs7043199, VLDLR-AS1, P = 5.12x10(-14)) at the 3 previously identified loci and strengthened the evidence for the four previously identified SNPs (rs6921438, LOC100132354, P = 7.39x10(-1467); rs1740073, C6orf223, P = 2.34x10(-17); rs6993770, ZFPM2, P = 2.44x10(-60); rs2375981, KCNV2, P = 1.48x10(-100)). These variants collectively explained up to 52% of the VEGF phenotypic variance. We explored biological links between genes in the associated loci using Ingenuity Pathway Analysis that emphasized their roles in embryonic development and function. Gene set enrichment analysis identified the ERK5 pathway as enriched in genes containing VEGF associated variants. eQTL analysis showed, in three of the identified regions, variants acting as both cis and trans eQTLs for multiple genes. Most of these genes, as well as some of those in the associated loci, were involved in platelet biogenesis and functionality, suggesting the importance of this process in regulation of VEGF levels. This work also provided new insights into the involvement of genes implicated in various angiogenesis related pathologies in determining circulating VEGF levels. The understanding of the molecular mechanisms by which the identified genes affect circulating VEGF levels could be important in the development of novel VEGF-related therapies for such diseases.

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