SNP in human ARHGEF3 promoter is associated with DNase hypersensitivity, transcript level and platelet function, and Arhgef3 KO mice have increased mean platelet volume

Siying Zou, Alexandra M. Teixeira, Myrto Kostadima, William J. Astle, Aparna Radhakrishnan, Lukas Mikolaj Simon, Lucy Truman, Jennifer S. Fang, John Hwa, Ping-xia Zhang, Pim van der Harst, Paul F. Bray, Willem H. Ouwehand, Mattia Frontini, Diane S. Krause*

*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

16 Citations (Scopus)
424 Downloads (Pure)

Abstract

Genome-wide association studies have identified a genetic variant at 3p14.3 (SNP rs1354034) that strongly associates with platelet number and mean platelet volume in humans. While originally proposed to be intronic, analysis of mRNA expression in primary human hematopoietic subpopulations reveals that this SNP is located directly upstream of the predominantly expressed ARHGEF3 isoform in megakaryocytes (MK). We found that ARHGEF3, which encodes a Rho guanine exchange factor, is dramatically upregulated during both human and murine MK maturation. We show that the SNP (rs1354034) is located in a DNase I hypersensitive region in human MKs and is an expression quantitative locus (eQTL) associated with ARHGEF3 expression level in human platelets, suggesting that it may be the causal SNP that accounts for the variations observed in human platelet traits and ARHGEF3 expression. In vitro human platelet activation assays revealed that rs1354034 is highly correlated with human platelet activation by ADP. In order to test whether ARHGEF3 plays a role in MK development and/or platelet function, we developed an Arhgef3 KO/LacZ reporter mouse model. Reflecting changes in gene expression, LacZ expression increases during MK maturation in these mice. Although Arhgef3 KO mice have significantly larger platelets, loss of Arhgef3 does not affect baseline MK or platelets nor does it affect platelet function or platelet recovery in response to antibody-mediated platelet depletion compared to littermate controls. In summary, our data suggest that modulation of ARHGEF3 gene expression in humans with a promoter-localized SNP plays a role in human MKs and human platelet function-a finding resulting from the biological follow-up of human genetic studies. Arhgef3 KO mice partially recapitulate the human phenotype.

Original languageEnglish
Article numbere0178095
Number of pages16
JournalPLoS ONE
Volume12
Issue number5
DOIs
Publication statusPublished - 23-May-2017

Keywords

  • NUCLEOTIDE EXCHANGE FACTOR
  • CARDIOVASCULAR-DISEASE
  • THROMBUS FORMATION
  • MOUSE PLATELETS
  • SHAPE CHANGE
  • RHOA
  • DIFFERENTIATION
  • EXPRESSION
  • PATHWAYS
  • INSIGHTS

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