Skip to main navigation Skip to search Skip to main content

Comprehensive Exploration of the Effects of miRNA SNPs on Monocyte Gene Expression

  • Nicolas Greliche
  • , Tanja Zeller
  • , Philipp S. Wild
  • , Maxime Rotival
  • , Arne Schillert
  • , Andreas Ziegler
  • , Panos Deloukas
  • , Jeanette Erdmann
  • , Christian Hengstenberg
  • , Willem H. Ouwehand
  • , Nilesh J. Samani
  • , Heribert Schunkert
  • , Thomas Munzel
  • , Karl J. Lackner
  • , François Cambien
  • , Alison H. Goodall
  • , Laurence Tiret
  • , Stefan Blankenberg
  • , David Alexandre Trégouët
  • , Tony Attwood
  • Belz Stephanie, Peter Braund, Jessy Brocheton, Jason Cooper, Abi Crisp-Hihn, Patrick Diemert, Nicola Foad, Tiphaine Godefroy, Jay Gracey, Emma Gray, Rhian Gwilliams, Susanne Heimerl, Jennifer Jolley, Unni Krishnan, Heather Lloyd-Jones, Ulrika Liljedahl, Ingrid Lugauer, Per Lundmark, Seraya Maouche, Jasbir S. Moore, Montalescot Gilles, David Muir, Elizabeth Murray, Chris P. Nelson, Jessica Neudert, David Niblett, Karen O'Leary, Helen Pollard, Carole Proust, Angela Rankin, Augusto Rendon, Catherine M. Rice, Hendrik Sager, Jennifer Sambrook, Schmitz Gerd, Michael Scholz, Laura Schroeder, Jonathan Stephens, Ann Christine Syvannen, Stefanie Tennstedt, Chris Wallace
  • INSERM U70
  • University Paris-Sud
  • Universitätsklinikum Hamburg-Eppendorf
  • Johannes Gutenberg University
  • Hammersmith Hospital
  • University of Lübeck
  • Wellcome Sanger Institute
  • Klinikum der Universität Regensburg und Medizinische Fakultät
  • Department of Haematology
  • University of Leicester
  • Glenfield Hospital
  • Centre de Recherche Institut du Cerveau et de la Moelle
  • University of Cambridge
  • Cambridge Biomedical Campus
  • University of Leicester
  • Cambridge Institute for Medical Research
  • Uppsala University
  • Trium Analysis Online GmbH
  • European Bioinformatics Institute
  • University of Regensburg

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

We aimed to assess whether pri-miRNA SNPs (miSNPs) could influence monocyte gene expression, either through marginal association or by interacting with polymorphisms located in 3'UTR regions (3utrSNPs). We then conducted a genome-wide search for marginal miSNPs effects and pairwise miSNPs × 3utrSNPs interactions in a sample of 1,467 individuals for which genome-wide monocyte expression and genotype data were available. Statistical associations that survived multiple testing correction were tested for replication in an independent sample of 758 individuals with both monocyte gene expression and genotype data. In both studies, the hsa-mir-1279 rs1463335 was found to modulate in cis the expression of LYZ and in trans the expression of CNTN6, CTRC, COPZ2, KRT9, LRRFIP1, NOD1, PCDHA6, ST5 and TRAF3IP2 genes, supporting the role of hsa-mir-1279 as a regulator of several genes in monocytes. In addition, we identified two robust miSNPs × 3utrSNPs interactions, one involving HLA-DPB1 rs1042448 and hsa-mir-219-1 rs107822, the second the H1F0 rs1894644 and hsa-mir-659 rs5750504, modulating the expression of the associated genes. As some of the aforementioned genes have previously been reported to reside at disease-associated loci, our findings provide novel arguments supporting the hypothesis that the genetic variability of miRNAs could also contribute to the susceptibility to human diseases.

Original languageEnglish
Article numbere45863
JournalPLoS ONE
Volume7
Issue number9
DOIs
StatePublished - 21 Sep 2012
Externally publishedYes

Fingerprint

Dive into the research topics of 'Comprehensive Exploration of the Effects of miRNA SNPs on Monocyte Gene Expression'. Together they form a unique fingerprint.

Cite this