Key result
The C4bT haplotype of the NOS3 gene was associated with a 7.37-fold increased risk of dilated cardiomyopathy compared to healthy controls.
Why the study?
Do NOS3 gene polymorphisms increase the risk of dilated cardiomyopathy?
Case-Control (n=569)
Yes
Do NOS3 gene polymorphisms increase the risk of dilated cardiomyopathy?
Odds Ratio: 7.37 (95% CI 3.51–15.5)
Absolute Event Rate: 8.6% vs 1.4%
p-value: p=<0.0001
The NOS3 gene polymorphisms, specifically the C4bT haplotype, are significantly associated with an increased risk of dilated cardiomyopathy, suggesting a role for oxidative stress and nitric oxide in its pathogenesis.
Does not warrant genetic testing for NOS3 now; leaves open a possible risk association requiring prospective validation.
Dilated Cardiomyopathy (DCM) is characterized by systolic dysfunction, followed by heart failure necessitating cardiac transplantation. The genetic basis is well established by the identification of mutations in sarcomere and cytoskeleton gene/s. Modifier genes and environmental factors are also considered to play a significant role in the variable expression of the disease, hence various mechanisms are implicated and one such mechanism is oxidative stress. Nitric Oxide (NO), a primary physiological transmitter derived from endothelium seems to play a composite role with diverse anti-atherogenic effects as vasodilator. Three functional polymorphisms of endothelial nitric oxide synthase (NOS3) gene viz., T-786C of the 5' flanking region, 27bp VNTR in intron4 and G894T of exon 7 were genotyped to identify their role in DCM. A total of 115 DCM samples and 454 controls were included. Genotyping was carried out by PCR -RFLP method. Allelic and genotypic frequencies were computed in both control & patient groups and appropriate statistical tests were employed. A significant association of TC genotype (T-786C) with an odds ratio of 1.74, (95% CI 1.14 - 2.67, p = 0.01) was observed in DCM. Likewise the GT genotypic frequency of G894T polymorphism was found to be statistically significant (OR 2.10, 95% CI 1.34-3.27, p = 0.0011), with the recessive allele T being significantly associated with DCM (OR 1.64, 95% CI 1.18 - 2.30, p = 0.003). The haplotype carrying the recessive alleles of G894T and T-786C, C4bT was found to exhibit 7 folds increased risk for DCM compared to the controls. Hence C4bT haplotype could be the risk haplotype for DCM. Our findings suggest the possible implication of NOS3 gene in the disease phenotype, wherein NOS3 may be synergistically functioning in DCM associated heart failure via the excessive production of NO in cardiomyocytes resulting in decreased myocardial contractility and systolic dysfunction, a common feature of DCM phenotype.
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Matsa et al. (2013) conducted a case-control in Dilated Cardiomyopathy (n=569). C4bT haplotype of NOS3 gene vs. Non-carriers / Healthy controls was evaluated on Risk of Dilated Cardiomyopathy associated with the C4bT haplotype (OR 7.37, 95% CI 3.51-15.50, p=<0.0001). The C4bT haplotype of the NOS3 gene was associated with a 7.37-fold increased risk of dilated cardiomyopathy compared to healthy controls.
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