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Biomedical subjects

M Cassader

Publications and source records attributed to M Cassader.

At least 37 records · Page 2Linked to original sources

Myocardial infarction before the age of 40 years is associated with insulin resistance.

Insulin resistance is associated with atherosclerosis, and hyperinsulinemia is predictive of coronary heart disease. However, a quantitative estimation of in vivo insulin sensitivity in juvenile myocardial infarction is still lacking and the mechanism of hyperinsulinemia is unknown. We estimated insulin sensitivity, beta-cell secretion, and hepatic insulin extraction using the minimal model analysis of a frequently sampled intravenous glucose tolerance test (FSIGT) in 25 normal-weight subjects without glucose intolerance and hypertension who had an acute myocardial infarction before the age of 40 years, and 10 control subjects comparable for age, sex, body mass index, and blood pressure. All patients underwent a coronary angiography. Insulin sensitivity was significantly lower in patients than in control subjects (mean +/- SEM, 4.6 +/- 0.6 v8.5 +/- 1.2 10(-4). min(-1)(microU/mL), P = .002). The basal C-peptide secretion rate (P = .02), total C-peptide secretion (P = .005), area under the curve (AUC) of insulin (P = .04) and C-peptide (P = .01), and hepatic insulin extraction (P = .04) were higher in patients versus control subjects. In conclusion, insulin resistance is evident in subjects with early myocardial infarction accurately selected to avoid the influence of other factors known to reduce insulin sensitivity, and hyperinsulinemia is due to an increase in beta-cell secretion rather than a decrease in hepatic insulin extraction.

Adult↗

Autoantibody response to CD38 in Caucasian patients with type 1 and type 2 diabetes: immunological and genetic characterization.

Insulin secretion is one of the functions mediated by CD38, a nonlineage pleiotropic cell surface receptor. The molecule is the target of an autoimmune response, because serum autoantibodies (aAbs) to CD38 have been detected in diabetic patients. In the healthy Caucasian population, the CD38 gene is bi-allelic (86% CD38*B and 14% CD38*A), whereas an Arg140Trp mutation has been identified in Japanese diabetic patients. We investigated the relationship between CD38 and diabetes in Caucasian patients by characterizing anti-CD38 aAbs in terms of prevalence and function (agonistic/nonagonistic activity) and by exploring the potential influence of the CD38 genetic background. A novel enzymatic immunoassay, using recombinant soluble CD38 as the target antigen, was developed for the analysis of anti-CD38 aAb titers. Sera from 19.15% of type 1 and 16.67% of type 2 diabetic patients were positive. The majority of anti-CD38 aAbs (57.14%) displayed agonistic properties, i.e., they demonstrated the capability to trigger Ca2+ release in lymphocytic cell lines. In agreement with these functional features, the presence of anti-CD38 aAbs in type 2 diabetic patients was associated with significantly higher levels of fasting plasma C-peptide and insulin, as compared with anti-CD38-counterparts. No diabetic subject carrying the Arg140Trp mutation and no preferential association between diabetes or aAb status and the CD38*A allele was found in the study population. These results show the significance of anti-CD38 aAbs as a new diagnostic marker of beta-cell autoimmunity in diabetes. Moreover, the prevalent agonistic activity of these aAbs suggests that they could mediate relevant effects on target cells by means of Ca2+ mobilization.

ADP-ribosyl Cyclase↗

Microvascular angina (cardiological syndrome X) per se is not associated with hyperinsulinaemia or insulin resistance.

BACKGROUND: Microvascular angina has been found to be associated with insulin resistance. However, many factors known to affect insulin sensitivity were not excluded in patient selection. We aimed to evaluate whether microvascular angina is per se associated with insulin resistance. MATERIALS AND METHODS: We performed a Frequently Sampled Intravenous Glucose Tolerance Test (0.33 g kg(-1) b.w.) in 10 normal weight and normotensive patients with microvascular angina, with normal glucose tolerance and normal plasma lipids. Ten healthy subjects, comparable for age, sex, body mass index, blood pressure and plasma lipids, were used as control group. RESULTS: Fasting serum glucose (4.49+/-0.2 SEM vs. 4.52+/-0.13 mmol L(-1), P = 0.9), insulin (39.46 +/-3.68 SEM vs. 47.12+/-4.6 pmol L(-1), P = 0.21) and C-peptide (0.56 +/-0.05 SEM vs. 0.53+/-0.05 nmol L(-1), P = 0. 68) values, as well as estimated parameters of insulin secretion and hepatic insulin extraction were similar in the two groups. Insulin sensitivity values (median, range) were also similar in the patients and control subjects (5.76 (3.39-12.30) vs. 7.54 (3.68-13.89. 10(-4) x min(-1)/(microU/mL), P = 0.97). CONCLUSION: Microvascular angina per se is not associated with hyperinsulinaemia or insulin resistance when other confounding factors are excluded in patient selection.

Adult↗

Acute myocardial infarction in young adults: prognostic role of angiotensin-converting enzyme, angiotensin II type I receptor, apolipoprotein E, endothelial constitutive nitric oxide synthase, and glycoprotein IIIa genetic polymorphisms at medium-term follow-up.

BACKGROUND: A number of reports have investigated the association between various gene polymorphisms and the phenotypic expression of myocardial infarction. No investigations have evaluated the prognostic role of genetic factors in young people with premature coronary disease. The aim of this study was to investigate the influence of genetic factors compared with that of conventional risk factors on follow-up events in a population of Italian young adults with myocardial infarction. METHODS AND RESULTS: The study population consisted of 106 young patients (mean age 40 +/- 4 years, range 23 to 45 years) with diagnosis of acute myocardial infarction. Clinical and genetic data from the group of patients with events during follow-up were compared with those from patients without events. The following genetic polymorphisms were tested: angiotensin I converting enzyme, angiotensin II type I receptor, apolipoprotein E (ApoE), endothelial constitutive nitric oxide synthase, and platelet glycoprotein IIIa. Coronary angiography was performed in 94 patients. Coronary angiography showed coronary artery disease in 93% of patients. During follow-up (46 +/- 12 months, range 25 to 72) the overall combined end points (cardiac death, myocardial infarction, and revascularization procedures) accounted for 21 events. Family history of coronary artery disease, smoking, stenosis of the left anterior descending artery at coronary angiography, and ApoE polymorphism (presence of epsilon4 allele) were significantly more prevalent (univariate analysis) in the group of patients with events. Logistic multivariate analysis showed that ApoE polymorphism (P =. 004, odds ratio [OR] 6.8, 95% confidence interval [CI] 2 to 22), family history (P =.005, OR 8.3, 95% CI 2 to 35), smoking after acute myocardial infarction (P =.008, OR 10.9, 95% CI 2 to 62), and left anterior descending coronary artery disease (P =.02. OR 6.6, 95% CI 1.3 to 33) were independent predictors of adverse events. CONCLUSIONS: Myocardial infarction at a young age is commonly characterized by evidence of multiple cardiovascular risk factors and by a favorable prognosis in short- and medium-term follow-up. Evidence of significant disease at coronary angiography suggests the presence of a premature atherosclerotic process. ApoE polymorphism (presence of epsilon4 allele) appears to be a strong independent predictor of adverse events, suggesting a remarkable influence in the accelerated coronary disease.

Adult↗

Increased blood levels of platelet-activating factor in insulin-dependent diabetic patients with microalbuminuria.

BACKGROUND: Platelet-activating factor (PAF), a phospholipid mediator of inflammation, may induce an enhanced size- and charge-dependent glomerular permeability in experimental animals. Studies on the role of PAF in enhanced glomerular permeability in the early phase of diabetic nephropathy are still lacking. METHODS: We evaluated the intravascular levels of PAF and its main catabolic enzyme, the PAF-specific plasma acetyl-hydrolase (PAF-AH), in basal conditions and after exercise, in normo- or micro-albuminuric insulin-dependent diabetic (IDD) patients and in normal subjects. RESULTS: The results obtained indicate that the concentration of PAF in whole blood was significantly enhanced in basal conditions, during and after exercise in all microalbuminuric IDD patients, but not in normoalbuminuric IDD or in control subjects. The increased concentration of PAF did not correlate with changes in the activity of PAF-AH, suggesting an enhanced production rather than a decreased catabolism of PAF. CONCLUSIONS: These results indicate an association between increased production of PAF and enhanced glomerular permeability in microalbuminuric IDD patients.

1-Alkyl-2-acetylglycerophosphocholine Esterase↗

Platelet glycoprotein IIIa PlA1/A2 polymorphism and its relationship with diabetic nephropathy in type 2 diabetic patients.

OBJECTIVE: The increased prevalence of cardiovascular events in type 2-diabetic patients with micro- or macroalbuminuria is not completely explained by an excess of conventional risk factors for atherosclerosis. Genetic polymorphism within the platelet glycoprotein IIIa has been implicated in the etiology of acute coronary syndromes. We tested the hypothesis that the PI(A1/A2) polymorphism could in part account for the increased cardiovascular risk of type 2-diabetic patients with micro- or macroalbuminuria compared to normoalbuminuric diabetic patients. RESEARCH DESIGN AND METHODS: We have examined the PI(A1/A2) polymorphism of the platelet glycoprotein IIIa in type 2-diabetic patients: 94 with micro-, macroalbuminuria, and 94 with normoalbuminuria, matched for age, sex and body mass index. PI(A) genotypes were performed by polymerase chain reaction and restriction enzyme digestion. RESULTS: There was no significant difference in the prevalence of PI(A2)-positive genotypes (either PI(A1/A2) or PI(A2/A2)) in the two groups of patients (chi2 = 0.19, df = 1 , p = 0.66). CONCLUSIONS: These results suggest that carriage of the platelet glycoprotein IIIa PI(A2) allele does not contribute to explain the increased cardiovascular risk associated with micro- or macroalbuminuria in type 2 diabetes.

Aged↗

Apolipoprotein H is increased in type 2 diabetic patients with microalbuminuria.

BACKGROUND AND AIM: Serum apolipoprotein H (Apo H) levels are increased in hyperlipidemic subjects and type 2 diabetics, but unknown in microalbuminuria, another disorder with an increased cardiovascular risk. We looked to see whether increased Apo H levels are associated with microalbuminuria in type 2 diabetes. METHODS AND RESULTS: Serum Apo H was calculated in 20 normoalbuminuric and 17 microalbuminuric type 2 diabetics matched for age, sex, body mass index (BMI), glycosylated haemoglobin, plasma lipids and duration of diabetes, and also compared with 20 non-diabetic controls matched for age, sex, BMI and plasma lipids. Mean serum Apo H was significantly higher in the microalbuminuric patients (31.12 +/- 1.58 SEM vs 25.25 +/- 1.52 and 24.72 +/- 0.99 mg/dL, p = 0.003). CONCLUSION: Serum apo H levels are increased in type 2 diabetics with microalbuminuria.

Albuminuria↗

Study of the glycosylation of apolipoprotein H.

Apolipoprotein H is a single chain polypeptide composed of 326 amino acids highly glycosylated. Its carbohydrate content is approximately 19% of the molecular weight. We show that it is rich in sialic acid linked alpha (2-6) to galactose or N-acetylgalactosamine. Sialic acid is not alpha (2-3) linked to galactose. Galactose is beta (1-4) linked to N-acetylglucosamine and beta (1-3) linked to N-acetylgalactosamine. Carbohydrate O-linked chains (mainly sialic acid) are alpha (2-6) linked to galactose or N-acetylgalactosamine. Galactose is also organised in O-linked chains and beta (1-4) linked to N-acetylglucosamine and beta (1-3) linked to acetylgalactosamine. Concanavalin A lectin was used to isolate two groups of apolipoprotein H molecules bearing biantennary and truncated hybrids and high mannose and hybrid oligosaccharides. Apolipoprotein H fails to bind lysine-Sepharose. Our results thus show that it presents truncated hybrid or hybrid-type carbohydrate chains which bear few unmasked mannose residues as a terminal sugar. Biochemical analysis of carbohydrate structures conducted on single isoforms separated through IEF revealed that no specific carbohydrate complex is bound to a single isoform.

Chromatography, Affinity↗

Human lipoprotein lipase HindIII polymorphism in young patients with myocardial infarction.

We investigated the possibility that the DNA HindIII polymorphism of human lipoprotein lipase (LPL) is associated with the severity of coronary artery disease (CAD) determined by angiography in young patients who survived a myocardial infarction (MI). Conflicting studies have explored the relationship linking CAD severity to the HindIII restriction site polymorphism at the LPL gene locus, and to our knowledge, no data are available from Italy. The patients were aged less than 45 years (mean age, 40.1 +/- 3.9 years); 83 were male and four were female. The 87 case-patients had a Q-wave or non-Q-wave infarction (67.3% and 32.7%, respectively); the MI was anterior (50.5%), lateral (41.7%), or inferior (7.8%). Analysis of coronary angiograms showed the absence of critical stenosis in 13.8% and the presence of monovessel disease in 50.6% and multivessel disease in 35.6% of the case-patients. The allelic frequency of the HindIII H(-) and H(+) allele was 0.37 and 0.63, respectively. There was a striking association between the HindIII polymorphism and the number of diseased vessels. The patients with HindIII(+/+) genotypes were significantly more likely to have double- or triple-vessel disease and less likely to have no significantly diseased vessels. In this study, we demonstrated that the homozygous form of the LPL HindIII(+) allele increases the risk of multivessel disease by a factor of 4 in an Italian group of young MI survivors. This association was independent from the smoking status and a positive family history for CAD and hypertension, which are known to predict CAD severity. The discrepancies in the results of these studies are difficult to explain. The lack of homogeneity in the study populations (age at which CAD occurred, number of enrolled patients, and geographical origin) and differences in the assessment of CAD severity may account for these conflicting results.

Adult↗

The binding of apolipoprotein H (beta2-Glycoprotein I) to lipoproteins.

Beta2-glycoprotein I has a high affinity for triglyceride-rich particles, activates lipoprotein lipase, and is also defined as an apolipoprotein H. Previous studies have shown that apolipoprotein H is a regular structural component of the major classes of lipoproteins. In view of these findings, we analyzed the interactions of apolipoprotein H with lipoproteins in the fasting plasma of eight normal, seven hypertriglyceridemic, and seven hypercholesterolemic subjects. After rate-zonal, density gradient ultracentrifugation, apolipoprotein H was little distributed among the different density fractions, and most of it was recovered in the last fraction that contained the lipoprotein-free plasma. A small percentage (4-13%) of the apolipoprotein H associated with plasma lipoproteins was detected at the density ranging from 1.090 to 1.225 g/ml. This result means that apolipoprotein H is little associated with lipoproteins.

Case-Control Studies↗

Apolipoprotein H is not affected by in vitro glycosylation.

Increased nonenzymatic glycosylation of all major classes of apolipoproteins has been demonstrated in diabetes. In this work we deal with the in vitro nonenzymatic glycosylation of apolipoprotein H, whose role in lipid metabolism is still poorly understood and whose levels increase in diabetes. Apolipoprotein H was isolated from human plasma and purified through a combination of affinity chromatography and continuous elution electrophoresis. The in vitro glycosylation was performed by incubating purified apolipoprotein H with high concentration of glucose. Our results indicate that the in vitro nonenzymatic glycosylation has no effect on the physical properties of apolipoprotein H, despite the fact that this apolipoprotein contains a high number of lysine residues. Since the in vitro concentration of glucose was far higher than the levels normally found in diabetic subjects, it is unlikely for apolipoprotein H to become glycosylated in diabetes.

Blotting, Western↗

Role of lipid, apolipoprotein levels and apolipoprotein E genotype in young Italian patients with myocardial infarction.

BACKGROUND AND AIM: Studies of young patients with acute myocardial infarction (AMI) have demonstrated that conventional risk factors are usually responsible for their premature atherosclerosis. No account has yet been published of the risk profile of young Italians surviving an AMI. In this study, the conventional risk factors, lipids and apolipoproteins, and apolipoprotein E (APOE) allele distribution were evaluated in 98 consecutive AMI survivors (94 males, 4 females) aged 40.1 +/- 3.9 for at least three months after their acute event. These survivors were matched for age, sex, body mass index and presence of diabetes mellitus with 98 controls selected from subjects admitted to the same hospital for other reasons. METHODS AND RESULTS: Lipid profiles and APOE polymorphism were determined in both groups. Coronary angiography during hospitalization showed the absence of critical stenosis in 6.6% of the survivors, mono-vessel disease in 57.7%, and multi-vessel disease in 35.5%. The survivors had a higher frequency of smoking, hypertension, family history for coronary artery disease (CAD) and dyslipidemia, and a much greater frequency of 3 or more risk factors than the controls: Odd ratios (OR) 7.4, 95% confidence interval (CI) 2.5-18.6, p = 0.0000. Significant differences were found between the groups for triglycerides (p = 0.000002), total cholesterol (p = 0.003), LDL-cholesterol (p = 0.012), HDL-cholesterol (p = 0.0002), apolipoprotein AI (p = 0.00001), and Apolipoprotein B (p = 0.000001). No differences were observed in APOE allele distribution (APOE*4 0.11 vs 0.08, APOE*3 0.86 vs 0.89, APOE*2 0.03 vs 0.03), nor in lipid profile when both higher risk genotype (E3/4, E4/4, E2/4) and lower risk genotype groups (E2/2, E2/3, E3/3) were analysed. OR were calculated as measures of the association of the E4-positive genotypes with AMI. They indicated a non-significant increase in risk of AMI when the survivors were compared with the controls (OR 1.78, 95% CI 0.84-3.70, p = 0.13). CONCLUSIONS: This study provides further evidence that conventional coronary risk factors are usually present in young AMI patients. The APOE*4 allele was associated with a 1.8 non-significant increase in the risk of AMI in our group with premature CAD. Comparison with controls showed that the presence of three or more risk factors sharply increased the probability of premature CAD and that hyper-triglyceridemia is an independent risk factor. The data on APOE polymorphism are less certain and a larger study is needed.

Adult↗

Effects of dietary cholesterol on plasma lipoproteins and their subclasses in IDDM patients.

To compare the effects of dietary cholesterol supplementation in insulin-dependent diabetic (IDDM) patients and normal subjects, 10 male IDDM patients in good glycaemic control (HbA1c 7.3+/-0.9%) (mean+/-SD) and normal plasma lipid levels, and 11 control male subjects of similar age, body mass index and lipid plasma levels underwent a double blind, cross-over, sequential study. Cholesterol supplementation of 800 mg/day or placebo were given for consecutive periods of 3 weeks. The concentration of plasma total cholesterol increased significantly with the dietary cholesterol supplementation compared to placebo in IDDM patients by 6% (p < 0.05) and in control subjects by 9% (p < 0.05). No changes were observed in the concentration of plasma triglycerides in either group. The LDL cholesterol level increased by 12% (p < 0.01) in patients and by 7% (p < 0.05) in control subjects. In patients plasma HDL cholesterol concentration remained the same, while in control subjects it tended to increase after cholesterol supplementation (from 1.14+/-0.26 to 1.23+/-0.27 mmol/l, p = 0.06). During the cholesterol intake period the mean concentration of LDL1, LDL2 and LDL3 subclasses in patients showed a significant increase by 21.0 (p < 0.05), 20.4 (p < 0.001) and 11.1% (p < 0.05), respectively, resulting in an 18.0% increase in mean total LDL mass (p < 0.001) without major changes in LDL composition. In the control subjects the changes in the concentrations of LDL subclasses during cholesterol intake were less and not significant. In the IDDM patients the cholesterol intake did not affect the concentration or composition of HDL subclasses or total HDL mass. In contrast, in control subjects cholesterol intake increased the mean concentration of HDL2a by 12.2.% (p < 0.05) and this increase was significantly different if compared to changes obtained in the patients. In conclusion, compared to normal subjects, in IDDM patients, dietary cholesterol intake increased the LDL particle mass significantly and had no positive effect on HDL.

Adult↗

Lack of relationship between the P1A1/P1A2 polymorphism of platelet glycoprotein IIIa and premature myocardial infarction.

BACKGROUND: The P1A1/P1A2 polymorphism of the platelet glycoprotein IIIa has been variably associated with an increased risk of coronary thrombosis. MATERIALS: We investigated the linkage between the P1A1/P1A2 polymorphism and the risk of myocardial infarction in 98 patients who suffered their first myocardial infarction at the age of 45 years or less and 98 well-matched control subjects without coronary artery disease. Lipid parameters were measured using conventional methods of clinical chemistry; P1A genotypes were determined by polymerase chain reaction and restriction enzyme digestion. RESULTS: There was no significant difference in the prevalence of P1A2-positive genotypes (either P1A1/P1A2 or P1A2/P1A2) between patients and control subjects (chi 2 = 0.66, d.f. = 1, P = 0.41). CONCLUSIONS: These results suggest that the P1A2 polymorphism of the platelet glycoprotein IIIa does not contribute to the genetic susceptibility to premature myocardial infarction.

Adult↗

Apolipoprotein H levels in diabetic subjects: correlation with cholesterol levels.

To assess the relationship between apolipoprotein H (apo H) plasma levels and lipid metabolism in diabetes mellitus, we have examined the correlation between apo H plasma concentration and the main plasma lipid levels in 127 non-insulin-dependent (NIDDM) and 118 insulin-dependent (IDDM) diabetes mellitus patients. The data are compared with those in 286 nondiabetics. Our data show a significant increase in plasma apo H in diabetic as opposed to nondiabetic subjects (NIDDM, 29.9 +/- 10.8 mg/dL; IDDM, 31.3 +/- 9.9; controls, 22.5 +/- 7.7; F = 53.3, P = .0001). The relation between plasma lipids and apo H was simultaneously evaluated in the three groups with inclusion of diabetes, sex, body mass index (BMI), and age as covariates in the model. This analysis showed a strong positive correlation (P = .0009) between apo H and total cholesterol, and a weaker positive correlation with triglycerides ([TGs] P = .016). The correlation between apo H and hemoglobin A1c (HbA1c) levels in diabetics (P = .03) highlights the importance of glycemic control for plasma levels of this apoprotein, which is highly glycated. Although the role of apo H in lipid metabolism is still uncertain, recent investigations on the possible relation between plasma apo H levels and increased plasma lipids and thrombotic risk could explain the increased atherosclerotic risk in diabetic patients.

Adult↗

Characterization of the carbohydrate structures of apolipoprotein H through concanavalin A affinity chromatography.

Apolipoprotein H, also known as beta 2-Glycoprotein I, is a single chain highly glycosylated polypeptide of 326 amino acids. The carbohydrate content of apolipoprotein H is approximately 19% of the molecular weight. Some studies have described the main oligosaccharides forming the glycosylated chains but the carbohydrate inner structures of apolipoprotein H has not been investigated yet. This gap should be filled being glycosylation a very important process which is able to regulate the structure and the biological functions of proteins. Lectins are proteins which specifically bind carbohydrate structures. Affinity chromatography of glycoproteins on immobilized lectins, such as Concanavalin A (Con A), has been proved to be a useful method for oligosaccharide fractionation. N-Linked oligosaccharide structures were shown to interact with Con A according to their branching properties. In the present study, we analyzed the patterns of Con A elution of apolipoprotein H isolated from human plasma. Using Con A affinity chromatography we show that apolipoprotein H has a high degree of heterogeneity in its glycosylated structure. It allowed one to isolate two groups of apolipoprotein H molecules bearing biantennary and truncated hybrids and high mannose and hybrid oligosaccharides. Since Con A affinity chromatography allows fractionation of molecules differing in the extent of carbohydrate branching irrespective of the sialyl residues, we can conclude that mannose residues are masked with other sugars such as galactose-beta (1-4)N-acetylglucosamine, galactose-beta (1-3)N-acetyl-galactosamine and sialic acid linked alpha (2-6) to galactose or to N-acetylgalactosamine, or capped with sulfated residues. Thus, according to our results apolipoprotein H presents truncated hybryd or hybrid-type carbohydrate chains which bear few unmasked mannose residues as terminal sugar. Moreover, isoelectrofocusing of apolipoprotein H forms fractionated on Con A demostrates that weakly bound material presents a predominance of more acidic isoforms than that firmly bound to the lectin, indicating that weakly bound fractions contain molecules which are more negatively charged and that Con A is able to separate glycosylated forms which are not discriminated by isoelectrofocusing.

Apolipoproteins↗

Characterization and representative structures of N-oligosaccharides bound to apolipoprotein H.

We studied the structure of N-linked carbohydrates bound to apolipoprotein H by a combination of two methods which make use of lectins. Digoxigenin-labelled lectins are used for the structural characterization of carbohydrate chains of glycoproteins. Concanavalin A lectin affinity chromatography was used to analyse apolipoprotein H according to the characteristics of its carbohydrate chain inner to sialic acid residues. Our results from digoxigenin-labelled lectins analysis showed that apolipoprotein H gave positive bands to SNA, DSA, GNA, PNA and AAA lectins. Apolipoprotein H gave a negative band when reacted with MAA lectin. When we applied apolipoprotein H onto the Concanavalin A lectin column no detectable amounts of protein were eluted with Concanavalin A buffer. After adding a buffer with low sugar concentration (10 mM glucoside) a large amount of apolipoprotein H was recovered. These molecules of apolipoprotein H weakly bound to the lectin. When a higher sugar concentration (500 mM mannoside) was added most of the sample applied was eluted. These molecules of apolipoprotein H firmly bound to the column having high affinity for the lectin. These results combined with those coming from the digoxigen-labeled lectins method enable us to understand the inner structure of carbohydrate chains with their outer branches. Molecules of apolipoprotein H which weakly bind to Concanavalin A could bear complex N-glycans organized in biantennary or truncated hybrid structures. Firmly bound apolipoprotein H referred to molecules rich in N-glycan hybrid structures. They have an outer branch belonging to the high mannose carbohydrate chains which explain the ability to bind to the column and an other main branch bearing the sequence galactose beta-(1-4)-N-acetylglucosamine beta-(1-2) mannose. Galactose could be the terminal sugar or, alternatively, be masked with sialic acid alpha-(2-6) terminally linked.

Amino Acid Sequence↗