Key result
Prostacyclin synthase promoter sequence variants associated with increased transcriptional activity, such as the SNP4 A allele, were significantly associated with a reduced risk of pulmonary arterial hypertension (OR 0.27).
Case-Control (n=233)
Yes
Odds Ratio: 0.27 (95% CI 0.1–0.72)
p-value: p=0.007
More transcriptionally active prostacyclin synthase promoter variants are overrepresented in unaffected BMPR2 mutation carriers, suggesting that increased endogenous prostacyclin expression may protect against the development of heritable PAH.
Genetic variants boosting prostacyclin expression may modify heritable PAH penetrance; hypothesis-generating and requires prospective validation before clinical use.
RATIONALE: Pulmonary arterial hypertension (PAH) is a progressive disease characterized by elevated pulmonary artery pressure, vascular remodeling, and ultimately right ventricular heart failure. PAH can have a genetic component (heritable PAH), most often through mutations of bone morphogenetic protein receptor 2, and idiopathic and associated forms. Heritable PAH is not completely penetrant within families, with approximately 20% concurrence of inactivating bone morphogenetic protein receptor 2 mutations and delayed onset of PAH disease. Because one of the treatment options is using prostacyclin analogs, we hypothesized that prostacyclin synthase promoter sequence variants associated with increased mRNA expression may play a protective role in the bone morphogenetic protein receptor 2 unaffected carriers. OBJECTIVES: To characterize the range of prostacyclin synthase promoter variants and assess their transcriptional activities in PAH-relevant cell types. To determine the distribution of prostacyclin synthase promoter variants in PAH, unaffected carriers in heritable PAH families, and control populations. METHODS: Polymerase chain reaction approaches were used to genotype prostacyclin synthase promoter variants in more than 300 individuals. Prostacyclin synthase promoter haplotypes' transcriptional activities were determined with luciferase reporter assays. MEASUREMENTS AND MAIN RESULTS: We identified a comprehensive set of prostacyclin synthase promoter variants and tested their transcriptional activities in PAH-relevant cell types. We demonstrated differences of prostacyclin synthase promoter activities dependent on their haplotype. CONCLUSIONS: Prostacyclin synthase promoter sequence variants exhibit a range of transcriptional activities. We discovered a significant bias for more active prostacyclin synthase promoter variants in unaffected carriers as compared with affected patients with PAH.
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Stearman et al. (2014) conducted a case-control in Pulmonary Arterial Hypertension (n=233). Prostacyclin synthase (PGIS) promoter sequence variants (SNP4 A allele) vs. PGIS promoter SNP4 C major allele was evaluated on Risk of pulmonary arterial hypertension (unaffected carriers vs all PAH) (OR 0.27, 95% CI 0.10-0.72, p=0.007). Prostacyclin synthase promoter sequence variants associated with increased transcriptional activity, such as the SNP4 A allele, were significantly associated with a reduced risk of pulmonary arterial hypertension (OR 0.27).
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