4.5 Article

Genetic variation in the vaspin gene affects circulating serum vaspin concentrations

Journal

INTERNATIONAL JOURNAL OF OBESITY
Volume 37, Issue 6, Pages 861-866

Publisher

SPRINGERNATURE
DOI: 10.1038/ijo.2012.133

Keywords

vaspin; insulin resistance; serum vaspin concentrations; GWAS

Funding

  1. Federal Ministry of Education and Research (BMBF)
  2. Boehringer Ingelheim Foundation
  3. Integrated Research and Treatment Center IFB Adiposity Diseases [K7-37, 38, 39]
  4. Metarot position
  5. Competence Network Obesity [FKZ 01GI0829]
  6. Integrierte Verbunde der Medizinischen Genomforschung-NGFN-Plus [FKZ 01GI0827, 01GS0823]
  7. Deutsche Forschungsgemeinschaft (DFG)
  8. Clinical Research Group 'Atherobesity' [KFO 152, 833/1-1, Stu192/6-1, KO 3512/1-1, KO 3880/1-2]
  9. German Diabetes Association
  10. DHFD (Diabetes Hilfs-und Forschungsfonds Deutschland)
  11. LIFE-Leipzig Research Center for Civilization Diseases, Universitat Leipzig
  12. European Union
  13. European Regional Development Fund (ERDF)
  14. Free State of Saxony within the framework of the excellence initiative

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OBJECTIVE: Visceral adipose tissue-derived serine protease inhibitor (vaspin) is an adipokine potentially linking obesity, insulin resistance and type 2 diabetes. Here, we searched for genetic determinants that could explain the variability in serum vaspin concentrations. RESEARCH DESIGN AND METHODS: First, we conducted a genome-wide association study (GWAS) for serum vaspin in the Sorbs cohort (N = 826). Subsequently, 26 single-nucleotide polymorphisms (SNPs) covering genetic variation in the vaspin locus were genotyped in the Sorbs. In addition, we measured serum vaspin concentrations in 1806 samples from Augsburg/the Cooperative Health Research in the Region of Augsburg (KORA) for replication of the association signals. Finally, we conducted association analyses of vaspin SNPs with metabolic traits in the Sorbs (N = 1013), KORA (N = 1813) and a further cohort from Germany (Leipzig: N = 1857). RESULTS: Six SNPs mapping between serpinA1 and serpinA4, including the vaspin locus, on chromosome 14 reached P-values <= 10(-8) in the GWAS in the Sorbs. The fine mapping of variants within the vaspin locus in the Sorbs and subsequent replication in the KORA sample revealed several SNPs significantly associated with serum vaspin concentrations reaching P-values of up to 10(-35). However, no significant association with type 2 diabetes or related traits was found in either cohort after the Bonferroni correction for multiple comparisons. CONCLUSION: Our data show that the variability in serum vaspin concentrations might be explained by its genetic variants.

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