Genetic polymorphisms associated with priapism in sickle cell disease
Open Access
- 4 April 2007
- journal article
- Published by Wiley in British Journal of Haematology
- Vol. 137 (3) , 262-267
- https://doi.org/10.1111/j.1365-2141.2007.06560.x
Abstract
Priapism occurs in 30–45% of male patients with sickle cell disease (SCD), but the possible influence of genetic risk factors on the incidence of priapism is not well understood. We examined genetic polymorphisms in 199 unrelated, adult (>18 years), male patients with Hb SS and Hb Sβ0‐thalassaemia, 83 (42%) of whom reported a history of priapism. Candidate genes for association with priapism were identified based on their involvement in adhesion, coagulation, inflammation and cell signalling. Additionally, we examined genes involved in nitric oxide biology (NOS2, NOS3, SLC4A1), as well as polymorphisms in the klotho (KL) gene, which has previously been associated with priapism. Strong evidence of association was found for single nucleotide polymorphisms in transforming growth factor‐β receptor, type III (TGFBR3) (rs7526590; P = 0·00058), aquaporin (AQP1) (rs10244884; P = 0·00068), integrin αv (ITGAV) (rs3768780; P = 0·00090), and the A1 subunit of coagulation factor XIII (F13A1) (hcv1860621; P = 0·00156). Associations with TGFBR3, AQP1, and ITGAV remained significant after adjusting for multiple testing, using the Benjamini–Hochberg procedure. Our data suggest that genes involved in the TGFβ pathway, coagulation, cell adhesion and cell hydration pathways may be important in risk for priapism.Keywords
This publication has 19 references indexed in Scilit:
- Sickle cell leg ulcers: associations with haemolysis and SNPs in Klotho, TEK and genes of the TGF‐β/BMP pathwayBritish Journal of Haematology, 2006
- Genetic dissection and prognostic modeling of overt stroke in sickle cell anemiaNature Genetics, 2005
- Association of single nucleotide polymorphisms in klotho with priapism in sickle cell anaemiaBritish Journal of Haematology, 2004
- Epinephrine acts through erythroid signaling pathways to activate sickle cell adhesion to endothelium via LW-αvβ3 interactionsBlood, 2004
- Genetic and Environmental Determinants of Fibrin Structure and FunctionArteriosclerosis, Thrombosis, and Vascular Biology, 2004
- GENITOURINARY COMPLICATIONS OF SICKLE CELL DISEASEJournal of Urology, 2001
- New Considerations in the Treatment of Sickle Cell DiseaseAnnual Review of Medicine, 1998
- Nitric oxide decreases cytokine-induced endothelial activation. Nitric oxide selectively reduces endothelial expression of adhesion molecules and proinflammatory cytokines.Journal of Clinical Investigation, 1995
- A Specific Chemical Difference Between the Globins of Normal Human and Sickle-Cell Anæmia HæmoglobinNature, 1956
- Sickle Cell Anemia, a Molecular DiseaseScience, 1949