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Journal ArticleDOI

Lack of Evidence for Linkage of the Endothelial Cell Nitric Oxide Synthase Gene to Essential Hypertension

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TLDR
Findings do not suggest that common molecular variants of the endothelial nitric oxide synthase gene are involved in essential hypertension.
Abstract
Background The basal release of nitric oxide by the endothelium plays an important role in regulating blood flow and pressure and mediates most of the endothelium-dependent vasodilation. Impairment of nitric oxide production by specific inhibitors increases blood pressure in humans, and several reports suggest that hypertensive subjects have a blunted endothelium-dependent vasodilatation that might be secondary to decreased nitric oxide production from the vessel wall. Methods and Results To determine whether the endothelial nitric oxide synthase gene is involved in human essential hypertension, we identified informative biallelic and multiallelic markers of this locus and performed case-control and linkage studies in hypertensive subjects and normotensive control subjects. We used the affected sib pair method to test for potential linkage in 145 hypertensive pedigrees (269 sib pairs, 346 subjects) with a highly polymorphic marker of the nitric oxide synthase gene (polymorphism information content of 92%). There was no evidence for linkage among affected siblings. The 95% upper confidence limit of this value suggests that at most 1% of alleles in excess of expected are shared. We also identified two informative biallelic markers of this gene to perform a case-control study on white hypertensive and normotensive subjects. Similar genotype distributions between the two groups were noted for both markers. Estimated haplotype frequencies by maximum likelihood methods combining the two biallelic markers were also similar in both groups. Conclusions These findings do not suggest that common molecular variants of the endothelial nitric oxide synthase gene are involved in essential hypertension.

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Citations
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Cellular and molecular mechanisms of endothelial cell dysfunction.

TL;DR: This Perspective will highlight some of the important new observations, as they relate to the pathology of the endothelial cell L -arginine/NO synthase (NOS) system, which have led to new insights into regulation of vascular tone, redox state, inflammation, growth, and the prothrombotic/antithrombosis properties of the vessel wall.
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Expressional control of the 'constitutive' isoforms of nitric oxide synthase (NOS I and NOS III).

TL;DR: This review recapitulates compounds and conditions that modulate the expression of NOS I and NOS III, and summarizes transcriptional and posttranscriptional effects that underlie these changes, and describes the molecular mechanisms leading to changes in transcription, RNA stability, or translation of these enzymes.
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A smoking-dependent risk of coronary artery disease associated with a polymorphism of the endothelial nitric oxide synthase gene.

TL;DR: In current and ex–cigarette smokers, but not nonsmokers, there was a significant excess of homozygotes for the rare ecNOS4a allele in patients with severely stenosed arteries, compared with those with no or mild stenosis, consistent with predisposition to endothelial dysfunction.
Journal ArticleDOI

A Common Variant of the Endothelial Nitric Oxide Synthase (Glu298→Asp) Is a Major Risk Factor for Coronary Artery Disease in the UK

TL;DR: Homozygosity for a common NOS 3 polymorphism (894 G-->T) which encodes a Glu298-->Asp amino acid substitution in eNOS is a risk factor for angiographic CAD and recent MI in this population.
References
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Journal ArticleDOI

Rapid and sensitive detection of point mutations and DNA polymorphisms using the polymerase chain reaction

TL;DR: It is found that most single base changes in up to 200-base fragments could be detected as mobility shifts and the interspersed repetitive sequences of human, Alu repeats are highly polymorphic.
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Abnormal endothelium-dependent vascular relaxation in patients with essential hypertension.

TL;DR: Endothelium-mediated vasodilation is impaired in patients with essential hypertension and this defect may play an important part in the functional abnormalities of resistance vessels that are observed in hypertensive patients.
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Nitric oxide-generating vasodilators and 8-bromo-cyclic guanosine monophosphate inhibit mitogenesis and proliferation of cultured rat vascular smooth muscle cells.

TL;DR: Results suggest that endogenous nitric oxide may function as a modulator of vascular smooth muscle cell mitogenesis and proliferation, by a cGMP-mediated mechanism.
Journal ArticleDOI

Molecular basis of human hypertension: Role of angiotensinogen

TL;DR: Evidence of genetic linkage between the angiotensinogen gene (AGT) and hypertension is obtained, association of AGT molecular variants with the disease is demonstrated, and significant differences in plasma concentrations of angiotENSinogen among hypertensive subjects with different AGT genotypes are found.
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