4.5 Article

Genome-wide association analysis and fine mapping of NT-proBNP level provide novel insight into the role of the MTHFR-CLCN6-NPPA-NPPB gene cluster

Journal

HUMAN MOLECULAR GENETICS
Volume 20, Issue 8, Pages 1660-1671

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/hmg/ddr035

Keywords

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Funding

  1. Ministero della Salute [RF-PAB-2006-342336]
  2. Ministry of Health and Department of Educational Assistance, University and Research of the Autonomous Province of Bozen/Bolzano
  3. South Tyrolean Sparkasse Foundation
  4. European Union [LSHG-CT-2006-018947]
  5. German Ministry of Education and Research (BMBF) through the National Genome Research Network (NGFN)
  6. Ministry of Science, Commerce and Transportation of the State of Schleswig-Holstein
  7. German Federal Ministry of Education and Research (BMBF)
  8. NIH
  9. Children's Hospital, Boston, USA [1 R01 DK075787-01A1]
  10. German National Genome Research Net NGFN2 and NGFNplus [01GS0823]
  11. Munich Center of Health Sciences
  12. Kompetenznetz Herzinsuffizienz (German Heart Failure Network)
  13. Federal Ministry of Education and Research (BMBF)
  14. Helmholtz Research Center Munchen for Environmental Health
  15. State of Bavaria
  16. European Academy Bozen/Bolzano (EURAC), Bolzano, Italy

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High blood concentration of the N-terminal cleavage product of the B-type natriuretic peptide (NT-proBNP) is strongly associated with cardiac dysfunction and is increasingly used for heart failure diagnosis. To identify genetic variants associated with NT-proBNP level, we performed a genome-wide association analysis in 1325 individuals from South Tyrol, Italy, and followed up the most significant results in 1746 individuals from two German population-based studies. A genome-wide significant signal in the MTHFR-CLCN6-NPPA-NPPB gene cluster was replicated, after correction for multiple testing (replication one-sided P-value = 8.4 x 10(-10)). A conditional regression analysis of 128 single-nucleotide polymorphisms in the region of interest identified novel variants in the CLCN6 gene as independently associated with NT-proBNP. In this locus, four haplotypes were associated with increased NT-proBNP levels (haplotype-specific combined P-values from 8.3 x 10(-03) to 9.3 x 10(-11)). The observed increase in the NT-proBNP level was proportional to the number of haplotype copies present (i.e. dosage effect), with an increase associated with two copies that varied between 20 and 100 pg/ml across populations. The identification of novel variants in the MTHFR-CLCN6-NPPA-NPPB cluster provides new insights into the biological mechanisms of cardiac dysfunction.

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