A variant of human paraoxonase/arylesterase (HUMPONA) gene is a risk factor for coronary artery disease.
نویسندگان
چکیده
Coronary artery disease (CAD) is a complex trait caused by a number of genetic and environmental factors. Recently, paraoxonase/arylesterase (PONA) enzyme has been implicated in the pathogenesis of atherosclerosis. There is a 10-40-fold variability in the activity of this enzyme among individuals. This variability is due to the presence of an A/G polymorphism in the coding region of the gene (HUMPONA). The A and G alleles code for glutamine (A genotype) and arginine (B genotype), respectively. Individuals with A genotype have a lower enzymatic activity than those with B genotype. We determined the HUMPONA genotypes and alleles in 223 patients with angiographically documented CAD and in 247 individuals in the general population. The distribution of genotypes were in Hardy-Weinberg equilibrium in patients and in controls. Genotypes A and B were present in 120 (49%) and 28 (11%) individuals in controls and in 68 (30%) and 40 (18%) patients with CAD, respectively (chi squared= 16.5, P= 0.0003). The frequency of the A allele was 0.69 in controls and 0.56 in patients (OR= 1.7, P= 0.0001). There were no differences in the distribution of HUMPONA genotypes in the subgroups of patients with restenosis, myocardial infarction, or any of the conventional risk factors for CAD as compared with corresponding subgroups. In summary, variants of the HUMPONA gene are involved in predisposition to coronary atherosclerosis.
منابع مشابه
The Gln-Arg191 polymorphism of the human paraoxonase gene (HUMPONA) is not associated with the risk of coronary artery disease in Finns.
The human paraoxonase gene (HUMPONA) is codominantly expressed as alleles A and G. The A allele codes for glutamine (A genotype) and the G allele for arginine (B genotype) at position 191 of the paraoxonase enzyme. This genetic polymorphism has been suggested to be associated with the predisposition to coronary artery disease (CAD). We investigated the frequency of paraoxonase A and G alleles i...
متن کاملمطالعه فنوتیپها و فعالیت آنزیم پارااکسوناز در بیماران مبتلا به گرفتگی عروق کرونر
Paraoxonase can hydrolyse organophosphate esters and paraxon is its most important substrate in laboratory studies. This enzyme circulates in blood with HDL. It seems that reduced paraoxonase activity in human may increase risk of coronary artery disease. Genetic variations in two autosomal genes may reduce its activity. These variations produce three phenotypes: A, AB and B. B phenotype ac...
متن کاملClinical and genetic association of serum paraoxonase and arylesterase activities with cardiovascular risk.
OBJECTIVE Diminished serum paraoxonase and arylesterase activities (measures of paraoxonase-1 [PON-1] function) in humans have been linked to heightened systemic oxidative stress and atherosclerosis risk. The clinical prognostic use of measuring distinct PON-1 activities has not been established, and the genetic determinants of PON-1 activities are not known. METHODS AND RESULTS We establishe...
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BACKGROUND Paraoxonase 1 (PON1) activity and von Willebrand factor (VWF) release are associated with lesion initiation in atherosclerosis. Diabetes can complicate coronary artery disease (CAD) due to the production of advanced glycation end products. This study evaluated PON1 activity and VWF levels in non-post-acute coronary syndrome, stable CAD (SCAD) patients without diabetes. MATERIAL/MET...
متن کاملParaoxonase 1 gene polymorphisms and enzyme activities in coronary artery disease and its relationship to serum lipids and glycemia.
OBJECTIVES Oxidative stress and inflammation are important processes in development of atherosclerosis. Paraoxonase 1 (PON1) is a bioscavenger enzyme associated with inflammation and oxidative stress. We evaluate the association of two single nucleotide polymorphisms in PON1 gene, and enzyme activities with lipid profile and glycemia. METHODS This case-control study consisted of 126 patients ...
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ورودعنوان ژورنال:
- The Journal of clinical investigation
دوره 96 6 شماره
صفحات -
تاریخ انتشار 1995