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Biomedical subjects

J C Fruchart

Publications and source records attributed to J C Fruchart.

At least 217 records · Page 12Linked to original sources

Multiple coronary heart disease risk factors are associated with menopause and influenced by substitutive hormonal therapy in a cohort of French women.

The relationship between menopause and cardiovascular risk factors of progestin alone or in combination with estrogen were analysed in a sample of French women. Three thousand four hundred and forty consecutive women, between 45 and 65 years of age, who received a systematic check-up between January 1991 and April 1993 were enrolled in this study. All biological measurements were performed at a central laboratory. Women were classified as premenopausal (n = 1233), postmenopausal (n = 1774) if they had not menstruated in the 12 months before examination, and perimenopausal (n = 433) if they met at least two of the following criteria: elevated levels of serum follicle-stimulating hormone (FSH), irregular menses, amenorrhea for less than 12 months, hot flushes. The effect of menopause on cardiovascular risk factors was determined in 2167 women between 45 and 65 years of age (premenopausal n = 790, postmenopausal n = 1377), none of whom were presently treated with hormonal replacement therapy (HRT). In addition, the effect of progestin was assessed in a group or 397 perimenopausal women, and the effect of combined estrogen and progestin replacement therapy in another group of 1746 postmenopausal women. Menopause was associated with higher levels of serum cholesterol (6.4 vs. 5.9 mmol/l), triglycerides (1.2 vs. 1.0 mmol/l), apolipoprotein (apo) B (1.3 vs. 1.1 g/l), apo A-I (1.9 vs. 1.8 g/l), as well as with elevated diastolic blood pressure (79.7 vs. 77.0 mmHg). Multivariate analysis indicated that these effects were independent of age, body mass index (BMI), glycemia, smoking, alcohol intake, exercise and parity. Perimenopausal women treated with progestin alone (n = 95) were compared to perimenopausal women not using HRT (n = 302). There were no statistically significant differences in the levels of cholesterol, triglycerides, apo B, apo A-I, glycemia and blood pressure between the two groups. Postmenopausal women using a combination of estrogen and progestin (n = 369) had significantly lower levels of serum cholesterol (6.1 vs 6.4 mmol/l), triglycerides (1.0 vs. 1.2 mmol/l), apo B (1.2 vs. 1.3 g/l), systolic (131.9 vs. 137.9 mmHg) and diastolic (76.9 vs. 79.7 mmHg) blood pressure than postmenopausal women without hormonal therapy (n = 1377), taking into account confounding variables. In contrast, serum apo A-I levels were not altered by the combined hormonal therapy. We conclude that menopause is associated with the aggravation of multiple cardiovascular risk factors. These deleterious factors are affected by a treatment of combining estrogen and progestin.

Aged↗

Lipoproteins containing apolipoprotein B isolated from patients with abetalipoproteinemia and homozygous hypobetalipoproteinemia: identification and characterization.

Abetalipoproteinemia (ABL) and homozygous hypobetalipoproteinemia (HBL) are inherited disorders which are classically characterized by progressive retinal and spinocerebellar disease, fat-soluble vitamin deficiency, and absence of apolipoprotein (apo) B from the plasma. Using immunoaffinity chromatography with an anti-apo B antiserum, we isolated apo B-containing lipoprotein (LpB) particles from the plasma of 4 ABL and 2 HBL patients. The LpB particles were characterized and compared with low density lipoprotein (LDL) and LpB isolated from normal plasma. The ABL/HBL LpB particles were similar in size and charge to normal LpB particles but were relatively enriched in several other apolipoproteins. They contained alpha-tocopherol in a ratio to cholesterol that was proportionately much higher than the very low ratio of alpha-tocopherol to cholesterol in plasma. They bound saturably to fibroblasts and were internalized and degraded similarly to LDL. Hence, the molecular defects in ABL and HBL permit the secretion of a very small number of apo B-containing lipoproteins which may be important for transport of alpha-tocopherol to peripheral tissues.

Abetalipoproteinemia↗

Comparison between fat intake assessed by a 3-day food record and phospholipid fatty acid composition of red blood cells: results from the Monitoring of Cardiovascular Disease-Lille Study.

We investigated the relationship between assessment of fatty acid intake by a 3-day food record and by capillary gas chromatography of erythrocyte phospholipid fatty acid. The study was performed in a sample of 244 men aged 45 to 66 years from the general population who were participating in the Monitoring of Cardiovascular Disease (MONICA)-Lille survey. The relationship between each nutrient and food item and erythrocyte phospholipid fatty acid was investigated by a regression model on proportion including each food item and nutrient as a dependent variable and percentage of fatty acid and covariables (nonalcoholic energy intake, age, alcohol intake, and smoking) as independent variables. Polyunsaturated fat and linoleic acid intake were positively correlated with linoleic acid content of erythrocytes (beta = 0.641 and 0.604, respectively, P < .001). Monounsaturated and saturated fat intake were correlated with oleic acid (beta = 0.375 and 0.373, respectively, P < .01). Fish intake correlated positively with docosahexaenoic acid (DHA) (beta = 0.383, P < .001) and negatively with arachidonic acid (beta = -0.509, P < .01). These data confirm, on a group level, a good relationship between assessment of polyunsaturated fat intake by a 3-day record and linoleic acid content of erythrocyte membranes. These data suggest that erythrocyte oleic acid content is a marker of both saturated and monounsaturated fat intake.

Animals↗

Comparison of the effect of fluvastatin, an hydroxymethyl glutaryl coenzyme A reductase inhibitor, and cholestyramine, a bile acid sequestrant, on lipoprotein particles defined by apolipoprotein composition.

In a double-blind, parallel-group, randomized study, the effects of fluvastatin (FLUV) 20 and 40 mg/d on lipoprotein particle levels were compared with those of cholestyramine (CME) 16 g/d. Lipoparticles were defined by apolipoprotein composition as either those containing both apolipoprotein (apo) B and apo E or CIII (lipoprotein [Lp] E-B or Lp CIII-B) or those containing apo AI alone (Lp AI) or in association with apo AII (Lp AI-AII). After an 8-week dietary stabilization period, 100 hypercholesterolemic patients were treated with FLUV 20 mg/d for 6 weeks and 40 mg/d for an additional 6 weeks and were compared with 48 hypercholesterolemic subjects treated with CME 16 g/d. Treatment with FLUV (40 mg/d) or CME (16 g/d) for 12 weeks was associated with a significant reduction in plasma cholesterol and low-density lipoprotein (LDL) cholesterol and a significant increase in high-density lipoprotein (HDL) cholesterol. However, plasma triglyceride levels decreased following FLUV treatment, whereas they increased with CME. These changes were associated with a significant reduction in the levels of apo B (FLUV, -24%, P < .001; CME, -26%, P < .001), apo E (FLUV, -36%, P < .001; CME, -32%, P < .001), and apo CIII (FLUV, -21%, P < .001; CME, -6%, NS).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Evidence that reduced lipoprotein lipase activity is not a primary pathogenetic factor for hypertriglyceridemia in renal failure.

The aim of the study was to document postheparin plasma lipoprotein lipase (LPL) and hepatic lipase activities and relate these to serum lipid, lipoprotein and apolipoprotein concentrations in 85 patients with kidney function ranging from normal to dialysis dependency. Strict selection criteria were applied in order to exclude conditions other than renal failure which may influence lipid metabolism. Stress was laid on minimizing proteinuria and inflammatory activity. The changes in the lipoprotein pattern were numerically strikingly modest compared to those previously reported. This probably reflected the intention to elucidate the contribution of reduced renal function as such to the dyslipoproteinemia of renal failure, a condition often associated with confounding factors. Significant increases in serum concentrations of triglycerides and apolipoprotein CIII were already observed in moderate renal failure, whereas serum concentrations of high density lipoprotein cholesterol and plasma LPL activities were decreased only in severe renal failure. Plasma LPL activities were not significantly reduced in hemodialysis patients (probably due to anticoagulation with low molecular weight heparin), but serum concentrations of triglycerides and apolipoprotein CIII were significantly increased. A multiple regression analysis, taking glomerular filtration rate, LPL and apolipoprotein CIII into account, showed that both plasma LPL activity and serum apolipoprotein CIII concentration independently predicted serum triglyceride concentration. However, serum apolipoprotein CIII concentration was a much stronger predictor than plasma LPL activity. Thus, a decrease in LPL activity does not seem to be a prerequisite for the hypertriglyceridemia of uremia, but it probably accentuates this condition.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Apolipoprotein A-I-containing lipoproteins and atherosclerosis.

Apolipoprotein A-I-containing lipoproteins represent a heterogeneous group of lipoparticles. Recent studies suggest that a specific subpopulation within the lipoprotein (AI) subclass may be more effective than other lipoproteins in promoting cholesterol efflux from cells and in the different steps of reverse cholesterol transport. This review describes the different apolipoprotein A-I-containing HDL subfractions, their role in reverse cholesterol transport, and their metabolic interconversions and relationship with lipoprotein-modifying enzymes.

Animals↗

Efficacy of sequential hormone replacement therapy in the treatment of hypercholesterolaemia among postmenopausal women.

OBJECTIVES: To test the efficacy of hormone replacement therapy (HRT) and dietary therapy, compared to dietary therapy, in lowering LDL cholesterol levels among postmenopausal women. DESIGN: A prospective parallel randomized study of sequential 17 beta-oestradiol and norethisterone acetate or placebo for 48 weeks. SETTING: A University outpatient lipid clinic. SUBJECTS: A total of 76 postmenopausal women, aged 43-60 years, with LDL cholesterol levels > or = 4.2 mmol 1-1, treated with a lipid-lowering diet. MAIN OUTCOME MEASURES: Levels of lipids, lipoproteins, apolipoproteins, fibrinogen and glucose tolerance. RESULTS: Adherence to the diet was similar in both groups. Total and LDL cholesterol levels were reduced by 14% (95% CI, 11-17%) and 19% (95% CI, 14-23%), respectively, in the HRT group vs. 3% (95% CI, 0-7%) and 5% (95% CI, 0-11%) in the diet group. HRT reduced the levels of apolipoprotein B and lipoprotein(a). Levels of HDL cholesterol, HDL2, HDL3, triglycerides, lipoprotein populations and apolipoproteins AI and AII remained unchanged. No adverse effects on glucose tolerance or on fibrinogen levels were observed. The reduction in LDL cholesterol was positively correlated with initial levels of LDL cholesterol and negatively correlated with body mass index. CONCLUSIONS: HRT is effective in reducing elevated LDL cholesterol levels, and should be considered in the treatment of hyperlipidaemic postmenopausal women, in addition to dietary therapy.

Adult↗

Abnormal reverse cholesterol transport in controlled type II diabetic patients. Studies on fasting and postprandial LpA-I particles.

The high incidence and prevalence of coronary heart disease in diabetes mellitus is clearly established. The usual lipid pattern found in type II diabetic patients is a moderate increase in fasting triglyceride levels associated with low HDL cholesterol levels. These abnormalities are further amplified in the postprandial state. To study the effect of these alterations on reverse cholesterol transport, we isolated lipoprotein containing apoA-I but not apoA-II (LpA-I) particles by immunoaffinity chromatography from the plasma of well-controlled type II diabetic patients and nondiabetic matched control subjects. Different parameters involved in this antiatherogenic pathway were measured in both fasting and postprandial states. Diabetic patients had reduced levels of LpA-I particles that were protein enriched and phospholipid depleted. Gradient gel electrophoresis showed that control LpA-I particles had five distinct populations, whereas diabetic particles lacked the largest one. LpA-I isolated from diabetic plasma exhibited a decreased capacity to induce cholesterol efflux from Ob 1771 adipose cells both in fasting (15.1 +/- 10.0% versus 7.5 +/- 2.7%, P < .05) and postprandial (17.7 +/- 11.2% versus 7.7 +/- 3.9%, P < .05) states, whereas only control particles showed significantly higher ability to promote cholesterol efflux after the test meal (P = .02). Lecithin:cholesterol acyltransferase activity measured with an exogenous substrate showed a 54% increase and an 18% decrease postprandially for control subjects and patients, respectively. Thus, the different abnormalities found in the fasting state were further amplified in the postprandial situation. This resulted in LpA-I particles with aberrant size and composition and decreased ability to accomplish their antiatherogenic role in type II diabetic patients.

Adipose Tissue↗

Modulation of lipoprotein B binding to the LDL receptor by exogenous lipids and apolipoproteins CI, CII, CIII, and E.

We have recently shown that apo B-containing lipoproteins isolated by immunoaffinity chromatography bind to the LDL receptor with an affinity dependent on their apo E or apo CIII content. However, these lipoproteins--LpB:E, LpB:CIII, and LpB:CIII:E--isolated from whole plasma have variable lipid and apolipoprotein contents, and it is difficult to consider each parameter separately, particularly because an increase in the apo CIII content is always associated with an increase in the content of other C apolipoproteins. Therefore, we used affinity-purified LpB free of other apolipoproteins. Lipid content of LpB was increased by incubation with a lipid emulsion, and this triglyceride-enriched LpB was named TG-LpB. Free apo CI, apo CII, apo CIII, and apo E were added to LpB and TG-LpB and their associations to the lipoprotein were assessed by gel filtration, nondenaturing electrophoresis, and immunoblotting. Molar ratios of 6 (apo E), 30 (apo CII), 20 (apo CIII), and 30 (apo CI) for 1 apo B were obtained. The association of apo CII to LpB and TG-LpB induced modifications to the LpB structure and a redistribution of lipids and apolipoproteins on the lipoprotein particles. The binding of these LpBs and TG-LpBs with and without added apo CI, CII, CIII, and E was tested at 4 degrees C on the LDL receptors of HeLa cells. The increased content of lipids reduced TG-LpB binding to the LDL receptor.(ABSTRACT TRUNCATED AT 250 WORDS)

Apolipoprotein C-I↗

Fibrates downregulate apolipoprotein C-III expression independent of induction of peroxisomal acyl coenzyme A oxidase. A potential mechanism for the hypolipidemic action of fibrates.

Epidemiological and transgenic animal studies have implicated apo C-III as a major determinant of plasma triglyceride metabolism. Since fibrates are very efficient in lowering triglycerides, it was investigated whether fibrates regulate apo C-III gene expression. Different fibrates lowered rat liver apo C-III mRNA levels up to 90% in a dose- and time-dependent manner, whereas intestinal apo C-III mRNA remained constant. This decrease in liver apo C-III mRNA was rapid (1 d) and reversible, since it was restored to control levels within 1 wk after cessation of treatment. In addition, fenofibrate treatment abolished the developmental rise of hepatic apo C-III mRNA observed during the suckling-weaning period. Administration of fibrates to rats induced liver and intestinal expression of the acyl CoA oxidase gene, the rate-limiting enzyme for peroxisomal beta-oxidation of fatty acids. In primary cultures of rat and human hepatocytes, fenofibric acid lowered apo C-III mRNA in a time- and dose-dependent manner. This reduction in apo C-III mRNA levels was accompanied by a decreased secretion of apo C-III in the culture medium of human hepatocytes. In rat hepatocytes fenofibric acid induced acyl CoA oxidase gene expression, whereas acyl CoA oxidase mRNA remained unchanged in human hepatocytes. Nuclear run-on and transient transfection experiments of a reporter construct driven by the human apo C-III gene promoter indicated that fibrates downregulate apo C-III gene expression at the transcriptional level. In conclusion, these studies demonstrate that fibrates decrease rat and human liver apo C-III gene expression. In humans the mechanisms appears to be independent of the induction of peroxisomal enzymes. This downregulation of liver apo C-III gene expression by fibrates may contribute to the hypotriglyceridemic action of these drugs.

Acyl-CoA Oxidase↗

Fibrates increase human apolipoprotein A-II expression through activation of the peroxisome proliferator-activated receptor.

In view of the evidence linking plasma high density lipoprotein (HDL)-cholesterol levels to a protective effect against coronary artery disease and the widespread use of fibrates in the treatment of hyperlipidemia, the goal of this study was to analyze the influence of fibrates on the expression of apolipoprotein (apo) A-II, a major protein constituent of HDL. Administration of fenofibrate (300 mg/d) to 16 patients with coronary artery disease resulted in a marked increase in plasma apo A-II concentrations (0.34 +/- 0.11 to 0.45 +/- 0.17 grams/liter; P < 0.01). This increase in plasma apo A-II was due to a direct effect on hepatic apo A-II production, since fenofibric acid induced apo A-II mRNA levels to 450 and 250% of control levels in primary cultures of human hepatocytes and in human hepatoblastoma HepG2 cells respectively. The induction in apo A-II mRNA levels was followed by an increase in apo A-II secretion in both cell culture systems. Transient transfection experiments of a reporter construct driven by the human apo A-II gene promoter indicated that fenofibrate induced apo A-II gene expression at the transcriptional level. Furthermore, several other peroxisome proliferators, such as the fibrate, Wy-14643, and the fatty acid, eicosatetraynoic acid (ETYA), also induced apo A-II gene transcription. Unilateral deletions and site-directed mutagenesis identified a sequence element located in the J-site of the apo A-II promoter mediating the responsiveness to fibrates and fatty acids. This element contains two imperfect half sites spaced by 1 oligonucleotide similar to a peroxisome proliferator responsive element (PPRE). Cotransfection assays showed that the peroxisome proliferator activated receptor (PPAR) transactivates the apo A-II promoter through this AII-PPRE. Gel retardation assays demonstrated that PPAR binds to the AII-PPRE with an affinity comparable to its binding affinity to the acyl coA oxidase (ACO)-PPRE. In conclusion, in humans fibrates increase plasma apo A-II concentrations by inducing hepatic apo A-II production. Apo A-II expression is regulated at the transcriptional level by fibrates and fatty acids via the interaction of PPAR with the AII-PPRE, thereby demonstrating the pivotal role of PPAR in controlling human lipoprotein metabolism.

5,8,11,14-Eicosatetraynoic Acid↗

Oxidized high-density lipoproteins modulate endothelin secretion by adult bovine aortic endothelial cells.

BACKGROUND: High-density lipoprotein (HDL) cholesterol levels are well established as an inverse risk factor for atherosclerosis. This fact is probably related to the ability of HDL to induce cholesterol efflux from the vascular cell. It is also possible that HDL affects the production of different mediators implicated in the development of atheroslerosis. Endothelin is a vasconstricting mitogenic peptide involved in the development of atherosclerosis. We studied whether native HDL, oxidized HDL and tetranitromethane HDL modulate the endothelin secretion of cultured adult bovine aortic endothelial cells. METHODS: We determined the effect of native HDL and modified HDLs (oxidized HDL and tetranitromethane HDL) on the secretion of endothelin by cultured adult bovine aortic endothelial cells. An endothelin radioimmunoassay system was used to quantify levels of immunoreactive endothelin in the cultured media. RESULTS: Native HDL, tetranitromethane HDL and oxidized HDL produced a highly significant stimulation of endothelin secretion (maximum 294% of control), even at low concentrations (10 and 20 micrograms/ml). Oxidized HDL2 and oxidized HDL3 produced a biphasic effect, with maximum secretion occurring with 100 micrograms/ml oxidized HDL3 (294% of control) and 50 micrograms/ml oxidized HDL2 (252% of control). The secretion of the peptide decreased with higher concentrations of oxidized HDL2 and oxidized HDL3. CONCLUSION: Because modified HDLs (oxidized HDL and tetranitromethane HDL) do not bind to the 'HDL receptor' to stimulate endothelin secretion, we propose that the stimulation of secretion is mediated by unspecific binding of the lipoprotein to the cell membrane. Nevertheless, oxidized HDL and tetranitromethane HDL may stimulate endothelin secretion via the scavenger-receptor pathway. Our results suggest that HDL and modified HDL participate in the regulation of vascular tone.

Animals↗

Association of synthetic peptide fragments of human apolipoprotein A-I with phospholipids.

The sequences of the plasma apolipoproteins have a high degree of internal homology as they contain several 22-mer internal repeats. These amphipathic helical repeats are considered as the structural and functional units of this class of proteins. We proposed that the 22-mer repeats of the plasma apolipoproteins consist of 17-mer helical segments separated by extended beta-strands comprising five amino acid residues with a proline in the center of this segment. These beta-strand segments help reverse the orientation of the consecutive helices of apoA-I, A-IV, and E in a discoidal apolipoprotein-phospholipid complex. In order to support this hypothesis, we synthesized apoA-I fragments consisting of, respectively, one putative helix (residues 166-183), one helix plus a beta-strand (residues 161-183), and a pair of helices separated by a beta-strand (residues 145-183). The structural and lipid-binding properties of these peptides were investigated by turbidity, fluorescence, binding studies with unilamellar phospholipid vesicles, electron microscopy, and circular dichroism measurements. Our data show that one single putative helical segment or one helical segment plus one extended beta-strand do not form stable complexes with phospholipids. The addition of a second adjacent helix has no influence on the lipid affinity of the apoA-I 145-183 peptide compared to the shorter segments but substantially improves the stability of the complexes. The helical content of the peptide increases upon lipid association as observed with apoA-I. The complexes generated with the apoA-I 145-183 peptide appear as discoidal particles by negative staining electron microscopy, with heterogeneous sizes ranging between 250 and 450 A. The relative orientation of the peptide and the phospholipid is the same as in a DMPC/apoA-I complex as the helices are oriented parallel to the acyl chains of the phospholipid. However, the stability of these complexes is significantly lower than that of the corresponding DMPC/apoA-I complexes. The transition temperature, fluidity, and cooperativity of the phospholipid bilayer are only weakly affected by the association with the apoA-I 145-183 peptide. These data suggest that a pair of helical peptides linked through a beta-strand associates more tightly with lipids and can form discoidal lipid-peptide complexes, than a single helix. A comparison with the properties of native apoA-I suggests, however, that the cooperativity between pairs of helices in native apoA-I further contributes to strengthen the lipid-protein association.

Amino Acids↗

Non-enzymatic glycosylation of apolipoprotein A-I and its functional consequences.

High-density lipoproteins (HDL) are believed to protect against atherosclerosis by promoting the process of reverse cholesterol transport. This process involves different steps including efflux of cellular cholesterol, cholesterol esterification and lipid transport and exchange. Apolipoprotein (apo) A-I, the major HDL apolipoprotein, and the HDL-associated enzyme lecithin-cholesterol acyltransferase (LCAT), which uses apo A-I as a cofactor, play a crucial role in reverse cholesterol transport. HDL may be classified into species according to their apolipoprotein content. Recent data concerning HDL particles indicate that lipoproteins containing apo A-I but not apo A-II (LpA-I) are more effective carriers of free cholesterol and are associated with a protective effect against coronary heart disease. In vitro studies have shown that glycosylated HDL are functionally abnormal and may be considered atherogenic. Our study considers the different impacts of non-enzymatic glycosylation of apo A-I or protein-HDL on the reverse cholesterol transport process.

Apolipoprotein A-I↗

Immunological and functional properties of in vitro oxidized low density lipoprotein.

We studied the effect of in vitro moderate oxidation on low density lipoprotein (LDL) conformation and metabolism. LDL was modified with either copper ions or phospholipase A2 plus lipoxygenase and, in both cases, mild oxidative conditions were used. The resulting conformational changes were investigated by studying immunological and biological properties of oxidized LDL. The immunoreactivity of apolipoprotein (apo) B-100 was examined using seven monoclonal antibodies. The biological implications of conformational changes were provided by cell-lipoprotein interaction studies using human fibroblasts and mouse peritoneal macrophages. Enzymatically treated LDL presented a relatively less oxidative degree of modification because it generated lower levels of TBARS, and displayed a lower electronegativity and more comparable cellular interactions with those of native LDL. Nevertheless, dramatic immunological changes were measured on both forms of LDL, i.e., a significant increase in the immunoreactivity of an epitope located in the B/E receptor binding domain, but also at epitopes far from this site and located in the N-terminal part of the apoB-100 molecule. The immunoreactivity of the C-terminal region was in contrast, decreased. Yet, as compared with enzymatically oxidized LDL, much more dramatic structural changes with chemically modified LDL were observed, resulting in such a particular conformation of lipoprotein that its interaction with the macrophagic scavenger receptor was favored, but its recognition by the B/E receptor of fibroblast was abolished. In contrast, despite a lower interaction between enzymatically modified LDL and the B/E receptor, the metabolism of this lipoprotein was quite comparable with that of native LDL and its degradation with cultured macrophages was poor. The use of in vitro models is common for study of the relationship between oxidized LDL and atherogenesis in humans. The choice of the more appropriate way to modify lipoproteins is of interest and is discussed.

Antibodies, Monoclonal↗

The effect of diet on lipid, apoprotein and lipoparticle variation in the ECTIM study in Belfast.

The objective of the study was to evaluate the contribution of dietary factors to variation of plasma levels of lipids, apoproteins and lipoparticles in the Northern Ireland population. This study was part of a larger case-control study of the genetic and environmental determinants of myocardial infarction in France and Northern Ireland. A random sample of 175 middle aged men was drawn from the population covered by the Belfast MONICA project register. Habitual diet was assessed by a questionnaire. A blood sample was obtained after an over-night fast for determination of plasma levels of lipids, apoproteins and lipoparticles. All participants had a medical examination and completed a lifestyle questionnaire. In a stepwise regression, after adjusting for co-factors (i) vitamin C and (ii) alcohol consumption were the only nutrients which contributed significantly to the variation in, respectively, (i) Total Cholesterol, LDL Cholesterol and Apolipoprotein B (inverse correlation) and (ii) HDL Cholesterol and LpAI (positive correlation). The amount of variation explained by the final models was modest, ranging from 4% to 15%. In conclusion, in this Northern Ireland population, habitual diet contributes to little of the variation in plasma levels of lipids, apoproteins and lipoparticles.

Adult↗

Immunoelectron microscopy of low density lipoproteins yields a ribbon and bow model for the conformation of apolipoprotein B on the lipoprotein surface.

In the present study, the relative positions of 11 anti-apolipoprotein B monoclonal antibodies have been mapped onto the surface of human low density lipoproteins by electron microscopy. As the epitopes recognized by these antibodies have been previously located on the primary sequence of apoB, these data provide a map of the configuration of the protein on the surface of the LDL. The first 89% of apoB-100 may be modeled as a thick ribbon that wraps once around the LDL, completing the encirclement by about amino acid residue 4050. The thickness of the ribbon is sufficient to penetrate the monolayer, so that it makes contact with the core. There is a kink in the ribbon beginning almost halfway along its length at approximately apoB-48. The C-terminal 11% of apoB constitutes the "bow," an elongated structure of about 480 residues, beginning at 4050 and stretching back into one hemisphere and then crossing the ribbon into the other hemisphere between residues 3000 to 3500, thus bringing sequences in the C-terminal portion of apoB-100 near to the suggested binding site for the LDL receptor. The C-terminal sequences may act as a negative regulator of LDL receptor binding, in agreement with Parhofer et al, 1992. J. Clin. Invest. 89: 1931-1937, who reported the enhanced clearance from plasma of apoB-89-containing lipoproteins. It is proposed that in VLDL the bow could function to inhibit binding to the receptor; during lipolysis to form LDL, it is suggested that these C-terminal inhibitory sequences forming the bow would move sufficiently to allow interaction with the LDL-receptor.

Antibodies, Monoclonal↗