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J Genest

Publications and source records attributed to J Genest.

At least 37 records · Page 2Linked to original sources

Cholesterol efflux regulatory protein, Tangier disease and familial high-density lipoprotein deficiency.

Cellular cholesterol efflux, by which cholesterol is transported from peripheral cells to HDL acceptor molecules for transport to the liver, is the first step of reverse cholesterol transport. Two genetic disorders, Tangier disease and some cases of familial HDL deficiency, have defects of cellular cholesterol efflux. The recent discovery of mutations in the ABC1 gene, which encodes the cholesterol efflux regulatory protein, in both these disorders establishes cholesterol efflux regulatory protein as a rate-limiting factor in reverse cholesterol transport.

ATP Binding Cassette Transporter 1↗

Age and residual cholesterol efflux affect HDL cholesterol levels and coronary artery disease in ABCA1 heterozygotes.

We and others have recently identified mutations in the ABCA1 gene as the underlying cause of Tangier disease (TD) and of a dominantly inherited form of familial hypoalphalipoproteinemia (FHA) associated with reduced cholesterol efflux. We have now identified 13 ABCA1 mutations in 11 families (five TD, six FHA) and have examined the phenotypes of 77 individuals heterozygous for mutations in the ABCA1 gene. ABCA1 heterozygotes have decreased HDL cholesterol (HDL-C) and increased triglycerides. Age is an important modifier of the phenotype in heterozygotes, with a higher proportion of heterozygotes aged 30-70 years having HDL-C greater than the fifth percentile for age and sex compared with carriers less than 30 years of age. Levels of cholesterol efflux are highly correlated with HDL-C levels, accounting for 82% of its variation. Each 8% change in ABCA1-mediated efflux is predicted to be associated with a 0.1 mmol/l change in HDL-C. ABCA1 heterozygotes display a greater than threefold increase in the frequency of coronary artery disease (CAD), with earlier onset than unaffected family members. CAD is more frequent in those heterozygotes with lower cholesterol efflux values. These data provide direct evidence that impairment of cholesterol efflux and consequently reverse cholesterol transport is associated with reduced plasma HDL-C levels and increased risk of CAD.

ATP Binding Cassette Transporter 1↗

Mutations in the ABC1 gene in familial HDL deficiency with defective cholesterol efflux.

BACKGROUND: A low concentration of HDL cholesterol is the most common lipoprotein abnormality in patients with premature atherosclerosis. We have shown that Tangier disease, a rare and severe form of HDL deficiency characterised by a biochemical defect in cellular cholesterol efflux, is caused by mutations in the ATP-binding-cassette (ABC1) gene. This gene codes for the cholesterol-efflux regulatory protein (CERP). We investigated the presence of mutations in this gene in patients with familial HDL deficiency. METHODS: Three French-Canadian families and one Dutch family with familial HDL deficiency were studied. Fibroblasts from the proband of each family were defective in cellular cholesterol efflux. Genomic DNA of each proband was used for mutation detection with primers flanking each exon of the ABC1 gene, and for sequencing of the entire coding region of the gene. PCR and restriction-fragment length polymorphism assays specific to each mutation were used to investigate segregation of the mutation in each family, and to test for absence of the mutation in DNA from normal controls. FINDINGS: A different mutation was detected in ABC1 in each family studied. Each mutation either created a stop codon predicted to result in truncation of CERP, or altered a conserved aminoacid residue. Each mutation segregated with low concentrations of HDL-cholesterol in the family, and was not observed in more than 500 control chromosomes tested. INTERPRETATION: These data show that mutations in ABC1 are the major cause of familial HDL deficiency associated with defective cholesterol efflux, and that CERP has an essential role in the formation of HDL. Our findings highlight the potential of modulation of ABC1 as a new route for increasing HDL concentrations.

ATP Binding Cassette Transporter 1↗

Homocyst(e)ine and cardiovascular disease: a critical review of the epidemiologic evidence.

PURPOSE: To review epidemiologic studies on the association between homocyst(e)ine level and risk for cardiovascular disease and the potential benefits of homocysteine-decreasing therapies. DATA SOURCES: Computerized and manual searches of the literature on total homocysteine levels and cardiovascular disease. STUDY SELECTION: Prospective studies and major retrospective epidemiologic studies evaluating the association between homocyst(e)ine levels and cardiovascular disease and the association between blood levels or dietary intake of folate, vitamin B6, and vitamin B12 and cardiovascular disease. DATA EXTRACTION: Relevant data on patient population, plasma homocyst(e)ine levels, duration of follow-up, and main results were extracted from studies that met the inclusion criteria. DATA SYNTHESIS: The designs and results of studies included in this review are summarized. A formal meta-analysis was not performed because the studies were heterogeneous in method and design. CONCLUSIONS: Results of epidemiologic studies suggest that moderately elevated plasma or serum homocyst(e)ine levels are prevalent in the general population and are associated with an increased risk for cardiovascular disease, independent of classic cardiovascular risk factors. Simple, inexpensive, nontoxic therapy with folic acid, vitamin B6, and vitamin B12 reduces plasma homocyst(e)ine levels. Although the association between homocyst(e)ine levels and cardiovascular disease is generally strong and biologically plausible, the data from the prospective studies are less consistent. In addition, epidemiologic observations of an association between hyperhomocyst(e)inemia and cardiovascular risk do not prove the existence of a causal relation. Therefore, the effectiveness of folate, vitamin B6, and vitamin B12 in reducing cardiovascular morbidity and mortality requires rigorous testing in randomized clinical trials. Several such trials are under way; their results may greatly affect cardiovascular morbidity and mortality, given the simplicity and low cost of vitamin therapy.

Arteriosclerosis↗

Cerebral vascular complication and hyperhomocysteinemia in a cystinotic uremic child.

We report a 13-year-old girl with nephropathic cystinosis on chronic peritoneal dialysis who presented with two episodes of stroke. Laboratory evaluation showed severe hyperhomocysteinemia (108 mumol/l). Further testing revealed that she was homozygous for the thermolabile variant of the methylenetetrahydrofolate reductase (MTHFR) gene. Treatment with folic acid and vitamin B12 lowered plasma homocysteine to less than 20 mumol/l. No further episodes of stroke occurred over a follow-up of 12 months. Homocysteine levels should be measured in patients with chronic renal failure, since simple and safe treatment with folic acid and vitamin B12 is effective in lowering the plasma homocysteine level in patients with the thermolabile MTHFR allele.

Adolescent↗

Familial hypercholesterolemia. Acceptor splice site (G-->C) mutation in intron 7 of the LDL-R gene: alternate RNA editing causes exon 8 skipping or a premature stop codon in exon 8. LDL-R(Honduras-1) [LDL-R1061(-1) G-->C].

Familial hypercholesterolemia (FH) is an autosomal dominant lipoprotein disorder caused by defects in the low density lipoprotein (LDL) receptor (R) gene. We report a novel mutation of the LDL-R gene in a 38-year-old man with homozygous FH from the province of Trujilo in Northern Honduras. The patient presented with tendinous xanthomas over the extensor tendons as well as xanthelasmas at sites of surgical scars. He was diagnosed with severe coronary artery disease requiring revascularization at age 29. After an unsuccessful course of treatment with simvastatin, the patient has been treated with plasma apheresis and macromolecular plasma filtration bi-monthly. Haplotyping of the LDL-R gene revealed homozygosity for the rare 'J' allele and a loss of the EcoRV restriction cleavage site in exon 8. Single stranded conformational polymorphism of exons 3, 6, 7, 9, 10 and 8 reveals an abnormal migration pattern in exon 8. Direct sequencing of the promoter region, exons 1, 4, 8 and 13 revealed two RFLP's and a novel mutation in intron 7. This mutation consists of G-->C transposition at the acceptor splice site of exon 8 at the last nucleotide of intron 7 [LDL-R1061(-1)G-->C]. Reverse transcriptase (RT) PCR amplification of RNA from monocytes obtained from the patient reveals a decrease in LDL-R mRNA (52% of control) and skipping of exon 8 (approximately 38%, as assessed by densitometric scanning of the amplified fragments) to form a new RNA transcript that includes exons 7 and 9 without frameshift. Alternative RNA editing leads to a new cryptic acceptor splice site 17 bp downstream in exon 8 producing a frameshift mutation and a predicted premature stop codon 1138 bp from the transcriptional start site (approxiamtely 62%). Western blotting analysis using a monoclonal antibody (C7) directed at the amino terminus of the LDL-R protein reveals a marked reduction in LDL-R protein expressed in monocytes obtained from the patient. We conclude that LDL-R1061(-1)G-->C is a novel mutation of the LDL-R gene that results in marked decrease in LDL-R mRNA levels and protein expression by two alternate RNA editing mechanisms, that cause skipping of exon 8 or the use of a novel cryptic acceptor splice site in exon 8 with a frameshift and premature stop codon. The patient continues to do well on selective plasma filtration but developed bilateral severe carotid artery disease requiring surgical intervention.

Adult↗

Mutations in ABC1 in Tangier disease and familial high-density lipoprotein deficiency.

Genes have a major role in the control of high-density lipoprotein (HDL) cholesterol (HDL-C) levels. Here we have identified two Tangier disease (TD) families, confirmed 9q31 linkage and refined the disease locus to a limited genomic region containing the gene encoding the ATP-binding cassette transporter (ABC1). Familial HDL deficiency (FHA) is a more frequent cause of low HDL levels. On the basis of independent linkage and meiotic recombinants, we localized the FHA locus to the same genomic region as the TD locus. Mutations in ABC1 were detected in both TD and FHA, indicating that TD and FHA are allelic. This indicates that the protein encoded by ABC1 is a key gatekeeper influencing intracellular cholesterol transport, hence we have named it cholesterol efflux regulatory protein (CERP).

ATP Binding Cassette Transporter 1↗

Cellular cholesterol transport and efflux in fibroblasts are abnormal in subjects with familial HDL deficiency.

Familial high density lipoprotein (HDL) deficiency (FHD) is a genetic lipoprotein disorder characterized by a severe decrease in the plasma HDL cholesterol (-C) level (less than the fifth percentile). Unlike Tangier disease, FHD is transmitted as an autosomal dominant trait. FHD subjects have none of the clinical manifestations of Tangier disease (lymphoid tissue infiltration with cholesteryl esters and/or neurological manifestations). Plasmas from FHD subjects contain pre-beta-migrating HDLs but are deficient in alpha-migrating HDLs. We hypothesized that a reduced HDL-C level in FHD is due to abnormal transport of cellular cholesterol to the plasma membrane, resulting in reduced cholesterol efflux onto nascent HDL particles, leading to lipid-depleted HDL particles that are rapidly catabolized. Cellular cholesterol metabolism was investigated in skin fibroblasts from FHD and control subjects. HDL3- and apolipoprotein (apo) A-I-mediated cellular cholesterol and phosphatidylcholine efflux was examined by labeling cells with [3H]cholesterol and [3H]choline, respectively, during growth and cholesterol loading during growth arrest. FHD cells displayed an approximately 25% reduction in HDL3-mediated cellular cholesterol efflux and an approximately 50% to 80% reduction in apoA-I-mediated cholesterol and phosphatidylcholine efflux compared with normal cells. Cellular cholesterol ester levels were decreased when cholesterol-labeled cells were incubated with HDL3 in normal cells, but cholesterol ester mobilization was significantly reduced in FHD cells. HDL3 binding to fibroblasts and the possible role of the HDL binding protein/vigilin in FHD were also investigated. No differences were observed in 125I-HDL3 binding to LDL-loaded cells between FHD and control cells. HDL binding protein/vigilin mRNA levels and its protein expression were constitutively expressed in FHD cells and could be modulated ( approximately 2-fold increase) by elevated cellular cholesterol in normal cells. In conclusion, FHD is characterized by reduced HDL3- and apoA-I-mediated cellular cholesterol efflux. It is not associated with abnormal cellular HDL3 binding or a defect in a putative HDL binding protein.

Adult↗

Hyperhomocyst(e)inemia--determining factors and treatment.

Elevated homocyst(e)ine levels are associated with an increased risk of vascular disease, particularly aorto-iliac, coronary and cerebrovascular disease. In patients with confirmed disease, plasma homocyst(e)ine is a strong predictor of death. In addition to B vitamins, folic acid and certain genotypes, renal function is an independent determinant of plasma homocyst(e)ine level. There also may be a polygenic component contributing to elevated homocyst(e)ine levels in confirmed vascular disease. Possible mechanisms of homocyst(e)ine-induced vascular change include proliferation of vascular smooth muscle cells, endothelial cell dysfunction and a procoagulant state. The definition of hyperhomocyst(e)inemia is based on arbitrary cut-points (eg, the 90th percentile). In most populations, this is approximately 15 microM/L. Patients with hyperhomocyst(e)inemia should be treated with at least 400 micrograms of folic acid per day. Alternative treatments are vitamin B6 and B12 supplementation, although optimal doses have yet to be identified.

Animals↗

Contribution of traditional risk factors to coronary artery disease in patients with systemic lupus erythematosus.

OBJECTIVE: Several factors have been implicated in the high prevalence of premature coronary artery disease (CAD) in patients with systemic lupus erythematosus (SLE). We hypothesize that variables independent of traditional risk factors contribute significantly to the development of CAD in SLE. We investigated the relative contribution of traditional risk factors in SLE patients with CAD compared to non-SLE patients with premature CAD. METHODS: An age matched retrospective cohort analysis. The prevalence of traditional cardiovascular risk factors (hypertension, hypercholesterolemia, diabetes, smoking, family history) in patients with SLE who developed CAD during the course of their illness was compared to a group of age matched non-SLE subjects with premature CAD. Sexes were analyzed separately using Fisher's exact test and unpaired t tests. RESULTS: Thirty-five patients with SLE (27 women, 8 men) with definite ischemic heart disease were identified along with 397 non-SLE subjects (83 women, 314 men). In women with SLE the mean number of CAD risk factors per cardiac event was 2.0 +/- 0.77 versus 2.90 +/- 1.19 for the comparison group (p = 0.0008). In men with SLE the mean number of CAD risk factors was 1.87 +/- 0.83 versus 2.73 +/- 0.99 in the comparison group (p = 0.016). CONCLUSION: SLE patients with a cardiac event have fewer traditional risk factors than non-SLE patients with premature CAD. Thus premature CAD in SLE cannot be attributed solely to an excess of traditional risk factors.

Adult↗

Contribution of the -455G/A polymorphism at the beta-fibrinogen gene to erythrocyte aggregation in patients with coronary artery disease.

BACKGROUND: A high level of red blood cell (RBC) aggregation has been consistently found in patients with coronary artery disease (CAD) in case-control studies. Plasma fibrinogen has been shown to promote RBC aggregability. The purpose of this study was to investigate the influence of the genetic variability of the beta-fibrinogen gene on RBC aggregation in patients with CAD. METHODS AND RESULTS: The genotype of the beta-fibrinogen gene locus was determined by polymerase chain reaction using the restriction enzyme HaeIII for a G to A substitution at position -455 upstream from the transcriptional start site in 135 French Canadians with premature CAD (age: 51+/-7 years). Indices measuring the RBC aggregation kinetics (S10) and shear resistance of the aggregates (gammaS) were obtained by laser reflectometry. Patients were separated into groups by using the medians of S10 and gammaS. Using chi2 analyses, the distribution of the -455GG, -455GA, and -455AA genotypes in the groups with high levels of S10 (0.43, 0.49, and 0.08) and gammaS (0.45, 0.49, and 0.06) were found to be significantly distinct from those in the groups with low levels of S10 (0.67, 0.27, and 0.06; p<0.05) and gammaS (0.70, 0.23, and 0.07; p<0.01). High levels of RBC aggregation were closely associated with the rare -455A allele. Multivariate linear regression analyses showed that S10 was positively correlated with the linear combination of the fibrinogen concentration, age, and the -455G/A genotype (adjusted r = 0.63, p<0.0001). Fibrinogen and age were positive determinants, and HDL-cholesterol was a negative predictor of gammaS (adjusted r = 0.51, p<0.0001). CONCLUSION: These findings support the hypothesis that RBC hyperaggregation in premature CAD may be associated with the beta-fibrinogen -455G/A polymorphism. This association may be explained by a change in the concentration and/or the functional properties of the fibrinogen protein.

5' Untranslated Regions↗

Atherogenic, hemostatic, and other potential risk markers in subjects with previous isolated myocardial infarction compared with long-standing uncomplicated stable angina.

BACKGROUND: Several atherogenic, hemostatic, inflammatory, and genetic parameters and markers have been implicated as risk factors in coronary artery disease, although whether they are risk factors for acute as opposed to chronic coronary disease is unclear. METHODS AND RESULTS: Fifty subjects with an isolated myocardial infarction >3 months previously were compared with 50 subjects with a minimum 3-year history of stable angina, documented coronary artery disease, normal electrocardiogram and normal ventricular wall motion, and no episode suggesting infarction or unstable angina. Biologic variables analyzed included apolipoprotein B (apo B), lipoprotein (a), C-reactive protein (CRP), fibrinogen, factor VII, tissue plasminogen activator (TPA) and inhibitor (PAI-1), thrombin-antithrombin (TAT), fragment 1+2 (F1+2), von Willebrand factor (vWF), activated protein C resistance, homocyst(e)ine, anticardiolipin antibodies, blood group, and the angiotensin-converting enzyme insertion/deletion (I/D) and angiotensin II receptor gene polymorphisms. There were no significant differences between the 2 groups for any of the variables studied, although fibrinogen and F 1+2 tended to be slightly higher in the angina group (P = .09 for each). These significant correlations were present: age with fibrinogen, homocyst(e)ine, and vWF; factor VII with apo B, homocyst(e)ine, and TPA; apo B with TPA and CRP; CRP with fibrinogen, TPA, PAI-1, and factor VII; fibrinogen with vWF. CONCLUSIONS: Examination of atherogenic, hemostatic, inflammation, and genetic variables in the clinically quiescent state permitted no distinction between subjects with a previous isolated myocardial infarction in contrast to those with long-standing uncomplicated stable angina, favoring the notion that acute coronary events occur at random on a varying background of atherosclerosis. The multiple correlations found among these variables also underscore their complex interaction in the atherosclerotic process.

Adult↗

Genetics of lipoprotein disorders.

The study of lipoprotein metabolism has led to major breakthroughs in the fields of cellular physiology, molecular genetics, and protein chemistry. These advances in basic science are reflected in medicine in the form of improved diagnostic methods and better therapeutic tools. Perhaps the greatest benefit is the improved ability to identify at an early stage patients who are at high risk for atherosclerosis, providing clinicians the opportunity to proceed swiftly with intensive lipid-lowering therapy for the prevention of cardiovascular complications. Recent clinical trials have shown that such an approach is not only cost-effective but saves lives while improving the quality of life. They also emphasize the important role physicians can have in prevention. More than half of patients with premature CAD have a familial form of dyslipoproteinemia. This review of the genetics of atherogenic lipoprotein disorders underscores the importance of identifying major genetic defects. It also stresses the need to take into account multifactorial etiologies and clustering of risk factors, as well as gene-gene and gene-environment interactions in assessing the atherogenic potential of a lipid transport disorder. Table 2 summarizes the key points in the diagnosis, clinical implications, and treatment of the major inherited atherogenic dyslipidemias.

Diagnosis, Differential↗

Plasma acylation stimulating protein (ASP) as a predictor of impaired cellular biological response to ASP in patients with hyperapoB.

BACKGROUND: The objective of this study was to examine specific membrane binding of [125I]-acylation stimulating protein (ASP) in cultured human skin fibroblasts obtained from normal subjects and patients with hyperapoB. ASP is a small basic protein isolated from human plasma that stimulates triglyceride synthesis (TGS) and glucose transport (GT) in human skin fibroblasts and adipocytes. DESIGN: In the present study, three groups were studied: normal (NASP-NB) subjects, hyperapoB subjects with normal plasma ASP (NASP-HB) and hyperapoB subjects with high plasma ASP (HASP-HB). RESULTS: ASP-induced TGS in fibroblasts from HASP-HB subjects was significantly less than in the two control groups with normal plasma ASP (NASP-NB and NASP-HB). Similarly, ASP stimulation of GT was less in HASP-HB fibroblasts than in the NASP-HB fibroblasts or the NASP-NB subjects. Insulin-induced TGS was similar in all three groups as was insulin-stimulated GT. As well, protein kinase C-mediated stimulation was equivalent among the three groups both for GT and for TGS. There was no significant difference in the binding affinity (Kd) of [125I]-ASP to intact cells in any group. By contrast, binding of [125I]-ASP revealed a significantly lower Bmax of the HASP-HB cell lines than the NASP-NB cells and the NASP-HB cells. CONCLUSION: A decrease in the ASP cell-surface receptor concentration is responsible for decreased ASP stimulation of TGS, and GT and may contribute to the inefficient postprandial triglyceride (TG) clearance in HASP-HB subjects.

Adult↗