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Biomedical subjects

G Assmann

Publications and source records attributed to G Assmann.

At least 109 records · Page 6Linked to original sources

Cloning and sequencing of a novel murine liver carboxylesterase cDNA.

Carboxylesterases (EC 3.1.1.1) comprise a group of serine hydrolases with at least 20 genetically distinct loci in mice. Here, we describe differential display PCR-based cloning of a cDNA, encoding a novel murine carboxylesterase termed ES-x, which was expressed predominantly in liver but also in kidney and lung. The cDNA of ES-x spanned a 2249-bp sequence with an open reading frame encoding 565 amino acids, including an N-terminal hydrophobic signal peptide which directs the synthesis into microsomal lumen and a C-terminal HVEL consensus sequence for retaining the protein in the lumen of the endoplasmic reticulum. The predicted amino acid sequence of ES-x exhibited 75% identity with rat liver pI 6.1 esterase. We further demonstrate that feeding mice with diets containing cholestyramine or sodium cholate increases mRNA-expression of ES-x in liver 2.5- to 3-fold.

Amino Acid Sequence↗

Defective peroxisomal catabolism of branched fatty acyl coenzyme A in mice lacking the sterol carrier protein-2/sterol carrier protein-x gene function.

Gene targeting in mice was used to investigate the unknown function of Scp2, encoding sterol carrier protein-2 (SCP2; a peroxisomal lipid carrier) and sterol carrier protein-x (SCPx; a fusion protein between SCP2 and a peroxisomal thiolase). Complete deficiency of SCP2 and SCPx was associated with marked alterations in gene expression, peroxisome proliferation, hypolipidemia, impaired body weight control, and neuropathy. Along with these abnormalities, catabolism of methyl-branched fatty acyl CoAs was impaired. The defect became evident from up to 10-fold accumulation of the tetramethyl-branched fatty acid phytanic acid in Scp2(-/-) mice. Further characterization supported that the gene disruption led to inefficient import of phytanoyl-CoA into peroxisomes and to defective thiolytic cleavage of 3-ketopristanoyl-CoA. These results corresponded to high-affinity binding of phytanoyl-CoA to the recombinant rat SCP2 protein, as well as high 3-ketopristanoyl-CoA thiolase activity of the recombinant rat SCPx protein.

Acetyl-CoA C-Acetyltransferase↗

Phenotype-dependent differences in apolipoprotein E metabolism and in cholesterol homeostasis in human monocyte-derived macrophages.

In this study, we investigated the impact of the common apoE polymorphism on apoE metabolism and cholesterol homeostasis in monocyte-derived macrophages isolated from E2/2, E3/3, and E4/4 subjects. Unloaded cells of all genotypes contained similar amounts of free cholesterol, cholesteryl ester, and apoE mRNA. E3/3 cells secreted 77 and 30% more apoE than E2/2 or E4/4 cells, respectively. Pulse-chase studies confirmed that the apoE secretion rate was greatest in E3/3 and least in E2/2 cells and showed that a portion of apoE2, but not apoE3 or apoE4, was degraded intracellularly. Surface binding of apoE was greatest in E4/4 cells, as revealed by heparinase treatment. On cholesterol loading with acetylated LDL, apoE mRNA levels and protein secretion rose most in E4/4 and least in E2/2 cells. Cholesterol and cholesteryl ester content, however, rose most in E2/2 and least in E3/3 cells. Incubations with 3H-cholesterol-labeled acetylated LDL revealed that E2/2 cells were most efficient at secreting cholesterol. The greatest reuptake of 3H-cholesterol-rich particles was from E4/4 macrophage- conditioned media. Thus, E2/2 macrophages, despite a low apoE secretion rate, are protected from cholesterol storage by apoE-mediated cholesterol efflux. In E3/3 macrophages, cholesterol accumulation is lessened by a high basal apoE secretion rate. E4/4 macrophages secrete the most apoE but lack effective net cholesterol efflux due to enhanced surface binding and reuptake of cholesterol-rich particles.

Adult↗

Adenosine(5') oligophospho-(5') guanosines and guanosine(5') oligophospho-(5') guanosines in human platelets.

We isolated and identified nucleoside(5') oligophospho-(5') nucleosides containing adenosine and guanosine (ApnG; n = 3-6) as well as diguanosine polyphosphates (GpnG; n = 3-6) in human platelets. For identification, UV spectrometry, matrix-assisted laser desorption/ionization, postsource decay matrix-assisted laser desorption/ionization mass spectrometry, and enzymatic cleavage experiments were used. The adenosine(5') oligophospho-(5') guanosines act as vasoconstrictors and growth factors. The diguanosine polyphosphates are potent modulators of growth in vascular smooth muscle cells, but do not affect vascular tone.

Adenosine↗

Absence of mutations in peripheral myelin protein-22, myelin protein zero, and connexin 32 in autosomal recessive Dejerine-Sottas syndrome.

Motor and sensory neuropathies with the clinical features of HMSN III (Dejerine-Sottas syndrome, DSS) are etiologically related to heterozygous mutations in either peripheral myelin protein-22 (PMP22) or myelin protein zero (MPZ). Heterozygous mutations in either of these two genes are also responsible for other hereditary peripheral neuropathies (HNPP, CMT1A, CMT1B or CH). In two families DSS was related to the homozygous presence of a MPZ mutation while heterozygosity showed a much milder phenotype. It has therefore been suggested that the clinical phenotype in peripheral neuropathies is related to the mutated gene, the type of mutation and confounding effects from other sources. In this study we describe a family with recessive DSS in which mutations were absent from the PMP22, MPZ, and connexin 32 (Cx32) genes. We conclude that DSS also exists as a distinct genetic entity with autosomal recessive inheritance as originally defined by Dejerine and Sottas in 1893.

Child, Preschool↗

Recurrent brachial plexus palsies as the only clinical expression of hereditary neuropathy with liability to pressure palsies associated with a de novo deletion of the peripheral myelin protein-22 gene.

There is phenotypic heterogeneity in patients with hereditary neuropathy with liability to pressure palsies. In rare cases, recurrent brachial plexopathy is the only expression of the disease. We describe a patient with three episodes of plexus brachialis palsy and a de novo deletion of the peripheral myelin protein-22 gene. We conclude that DNA analysis is a key issue not only for the differentiation of peripheral neuropathies but also in the diagnosis of recurrent plexopathies.

Adult↗

Prevalence of factor V Leiden mutation in young adults with cerebral ischaemia: a case-control study on 225 patients.

Cerebral ischaemia in young adults is a well-recognised disease, and approximately half of the cases remain aetiologically unclear despite extensive investigations. Thrombophilias are known to cause a subset of ischaemic strokes in this population. The factor V Leiden (FVL) mutation, causing resistance to activated protein C, has recently been recognised as the most important genetic thrombophilia in the Western population. Carriers of this gene mutation have a sevenfold increased risk of phlebothrombosis. We undertook this study to evaluate whether the FVL mutation constitutes a risk factor for juvenile cerebral ischaemias. A total of 225 patients aged < or = 45 years at onset of cerebral ischaemia and 200 age-matched healthy controls were investigated. The overall frequency of heterozygosity for the FVL mutation did not differ significantly between patients (8.4%) and controls [6.0%; odds ratio (OR) 1.4, 95% confidence interval (CI) 0.7-3.1]. In the subgroup of patients with cryptogenic cerebral ischaemia (n = 94), however, a significantly higher frequency of this gene defect (15.9%) was found compared with the controls (OR 3.0, CI 1.3-6.6). Further trends towards higher frequencies of the FVL mutation were found in patients with patent foramen ovale (OR 1.9), individual (OR 2.1) or family history of previous thrombembolisms (OR 2.0), and in those aged 25 years at onset of disease (OR 1.9, all not significant). In conclusion, the FVL mutation is not a risk factor for cerebral ischaemia of the young. However, our results suggest that this gene mutation plays an aetiological role in the subgroup of patients suffering from 'cryptogenic' ischaemic events.

Adolescent↗

Lipid-free apolipoprotein (apo) A-I is converted into alpha-migrating high density lipoproteins by lipoprotein-depleted plasma of normolipidemic donors and apo A-I-deficient patients but not of Tangier disease patients.

Plasma of patients with Tangier disease (TD) is devoid of alpha-LpA-I (apolipoprotein A-I-containing lipoprotein), which in normolipidemic plasma constitutes the majority of high density lipoprotein (HDL). The residual amounts of apolipoprotein A-I (apo A-I) in TD plasma have electrophoretic prebeta1-LpA-I mobility. We have previously demonstrated that TD plasma does not convert prebeta1-LpA-I into alpha-LpA-I. In this study we found that plasmas of normolipidemic controls, apo A-I-deficient patients and patients with fish-eye disease, but not plasmas of six TD patients, convert biotinylated lipid-free apo A-I into alpha-LpA-I. Supplementation of plasma with free oleic acid or fatty acid free albumin neither inhibited conversion activity in normal plasmas nor reconstituted it in TD plasma. In normal plasma the conversion activity was assessed in HDL and in the lipoprotein-free fraction. The latter fraction, however, generated larger particles only in the presence of exogenous phospholipid vesicles. To obtain particles with alpha-mobility, these vesicles had to contain phosphatidylinositol and/or cholesterol. Lipoprotein-depleted TD plasma did not convert lipid-free apo A-I into alpha-LpA-I even in the presence of exogenous vesicles with phospholipids or cholesterol. Taken together we conclude that disturbed transfer of glycerophospholipds onto apo A-I or prebeta1-LpA-I prevents maturation of HDL and thereby possibly causes deficiency of HDL cholesterol in patients with TD. Moreover, the lack of alpha-LpA-I in TD plasma together with its failure to convert exogenous apo A-I into an alpha-migrating particle provide specific tests for the diagnosis of TD.

Adult↗

High density lipoproteins and reverse cholesterol transport: lessons from mutations.

High density lipoproteins (HDL) encompass structurally and functionally heterogeneous particles. Two-dimensional nondenaturing polyacrylamide gradient gel electrophoresis (2D-PAGGE) and subsequent immunoblotting helps to differentiate quantitatively minor HDL-subclasses from the bulk of HDL, which contains apo A-I and has electrophoretic alpha-mobility. Pulse-chase experiments identified the quantitatively minor HDL subclasses prebeta1-LpA-I, gamma-LpE and LpA-IV as initial and fast acceptors of cell-derived cholesterol and alpha-migrating HDL (i.e. alpha-LpA-I) as a late and slow acceptor. In plasmas of patients with certain forms of familial HDL-deficiency such as apo A-I deficiency and Tangier disease, prebeta1-LpA-I, gamma-LpE and LpA-IV represent the only HDL particles and account for the significant residual cholesterol efflux capacity of these plasmas. These particles, however, also fulfill important roles in reverse cholesterol transport of normal plasma. Prebeta1-LpA-I, for example, is generated, during the interconversion of HDL by lipid transfer proteins. Thus, incubation of plasma with phospholipid transfer protein increases the concentration of prebeta1-LpA-I and in parallel increases the cholesterol efflux capacity of plasma indicating that lipid transfer proteins modulate cholesterol efflux by modification of HDL subclass composition. Apo E and gamma-LpE are of special interest for reverse cholesterol transport since macrophages can produce apo E.

Animals↗

Modulated serum activities and concentrations of paraoxonase in high density lipoprotein deficiency states.

Paraoxonase is a high density lipoprotein (HDL) associated enzyme with a hypothesised role in the protection of low density lipoproteins (LDL) from oxidative stress. The present study examined paraoxonase in several genetically distinct HDL deficiency states. Despite reduction or even absence of detectable HDL, enzyme activity was present in sera from A-I-Pisa, A-I-Helsinki, A-I-Milano and Tangier patients. Both enzyme activities and peptide concentrations were modulated (reduced) but specific activities were broadly similar to controls, suggesting an impact on peptide concentration rather than an inhibition of enzyme activity. Despite the absence of HDL in A-I-Pisa and Tangier subjects, there was no association of paraoxonase with very low density lipoproteins or LDL. Paraoxonase function is maintained in HDL deficient states. It implies that certain HDL-associated anti-atherogenic processes may not be entirely compromised by HDL deficiency. This has important implications for the cardiovascular risk associated with modulated HDL concentrations.

Adult↗

Basal growth hormone levels in women are positively correlated with high-density lipoprotein cholesterol and apolipoprotein A-I independently of insulin-like growth factor 1 or insulin.

Previous studies in growth hormone (GH)-deficient or acromegalic patients yielded contradictory results on the effect of GH on lipoprotein metabolism. In a cross-sectional study, we analyzed the relationships between unstimulated GH, insulin-like growth factor 1 (IGF1), insulin, and lipoprotein metabolism in 44 non-obese young women. On univariate analysis, basal serum levels of GH correlated positively with triglycerides, high-density lipoprotein (HDL) cholesterol, apolipoprotein A-I (apoA-I) and apoA-II and negatively with lipoprotein lipase (LPL) activity. These associations remained significant on multivariate analyses that, in addition to GH, took into account the effects of insulin or C-peptide, as well as the effects of total, protein-bound, or free IGF1. In most cases, the relationships of these lipid parameters with insulin/C-peptide and IGF1 and its free or protein-bound subfractions were opposite of those with GH and not significant. Thus, GH appears to regulate the metabolism of HDL and triglycerides independently of IGF1 and insulin.

Adult↗

Assignment of Tangier disease to chromosome 9q31 by a graphical linkage exclusion strategy.

A low level of high density lipoprotein (HDL) cholesterol is a strong predictor of ischaemic heart disease (IHD) and myocardial infarction. One cause of low HDL-cholesterol is Tangier disease (TD), an autosomal codominant inherited condition first described in 1961 in two siblings on Tangier Island in the United States of America. Apart from low HDL-cholesterol levels and an increased incidence of atherosclerosis, TD is characterized by reduced total cholesterol, raised triglycerides, peripheral neuropathy and accumulation of cholesteryl esters in macrophages, which causes enlargement of the liver, spleen and tonsils. In contrast to two other monogenic HDL deficiencies in which defects in the plasma proteins apoA-I and LCAT interfere primarily with the formation of HDL (refs 7-10), TD shows a defect in cell signalling and the mobilization of cellular lipids. The genetic defect in TD is unknown, and identification of the Tangier gene will contribute to the understanding of this intracellular pathway and of HDL metabolism and its link with IHD. We report here the localization of the genetic defect in TD to chromosome 9q31, using a genome-wide graphical linkage exclusion strategy in one pedigree, complemented by classical lod score calculations at this region in a total of three pedigrees (combined lod 10.05 at D9S1784). We also provide evidence that TD may be due to a loss-of-function defect.

Chromosome Mapping↗

Smoking, lipoproteins and coronary heart disease risk. Data from the Münster Heart Study (PROCAM).

AIMS: The mechanism of the increase in coronary heart disease risk associated with smoking is unclear, but may partly be due to smoking-related changes in intermediate risk factors such as lipid levels, fibrinogen and blood pressure. We therefore examined the distribution of these variables among smokers and non-smokers in the Münster Heart Study. METHODS: 20696 men, aged 41.7+/-2.7 years (mean +/- SD) and 10212 women, aged 37.0+/-2.6 years, were enrolled between 1978 and 1995. Thirty-two percent of women and 36% of men smoked. Compared to non-smokers, mean levels of low density lipoprotein cholesterol, total cholesterol, triglycerides and fibrinogen were increased, respectively, by 1.4%, 0.9%, 15% and 12.1% in male and by 2.0%, 5.5%, 12% and 3.4% in female smokers. Mean high density lipoprotein cholesterol levels, body mass index and blood pressure were reduced, respectively, by 6.4%, 3.8%, and 2% in male, and by 6.7% 1.2% and 2% in female smokers. In the subgroup of 4639 men aged 40 to 65 with 8 years of follow-up, the coronary event rate (definite myocardial infarction, sudden cardiac death) in cigarette smokers was more than twice that of non-smokers with otherwise identical risk factors. CONCLUSION: In the Münster Heart Study, smoking was associated with adverse changes in lipids (of greater magnitude in women), and fibrinogen (of greater magnitude in men). However, these changes explained only a small part of the smoking-related increase in coronary heart disease risk.

Adult↗

Plasminogen activator inhibitor-1 4G/5G-polymorphism and factor V Q506 mutation are not associated with myocardial infarction in young men.

Several recent studies have reported contradicting results concerning the relevance of the plasminogen activator inhibitor-1 (PAI-1) 4G/5G-polymorphism for myocardial infarction. In addition, the common factor V Q506 (FV:Q506) mutation is frequently discussed as a risk factor for arterial thrombosis, but evidence is rare. In order to further highlight the role of both polymorphisms in myocardial infarction, we investigated 241 young male myocardial infarction patients (< or = 45 years-of-age) aged 38.6+/-4.4 years (mean+/-SD) for the presence of both genotypes. The control group consisted of 179 healthy men aged 47.1+/-6.4 years (mean+/-SD) of the same ethnic background as the patients. Neither the distribution of the PAI-1 4G/5G-polymorphism nor the prevalence of the FV: Q506 mutation was significantly different between young patients and controls (4G/4G-genotype: chi2=2.08, NS; odds ratio 1.36, 95% confidence interval 0.89-2.06; FV:Q506 mutation: chi2=0.33, NS; odds ratio 1.33, 95% confidence interval 0.64-2.78). Moreover, the PAI-1 4G/5G-distribution did not differ significantly between patients and controls in subgroups by tertiles of triglyceride levels. In conclusion, in the present study neither homozygosity for the 4G allele of the PAI-1 4G/5G-polymorphism nor the FV:Q506 mutation led to an increased risk of myocardial infarction in young men.

Adult↗

Hemostasis in normotensive and hypertensive men: results of the PROCAM study. The prospective cardiovascular Münster study.

BACKGROUND: The greater than normal cardiovascular risk of hypertensive patients could be partly due to an impairment of hemostatic balance found in such individuals. OBJECTIVE: To examine the relationship between hemostatic variables and blood pressures in 1950 apparently healthy male participants in the prospective cardiovascular Münster study aged 40-65 years. METHODS: Blood pressure and other variables were determined, including fibrinogen level, coagulation factor VII clotting activity, protein C level, antithrombin III level, plasminogen activator inhibitor-1 level, euglobulin fibrinolytic activity, and von Willebrand factor level. RESULTS: Age-adjusted mean values of coagulation factor VII clotting activity, plasminogen activator inhibitor-1 level, antithrombin III level, and protein C level in hypertensives and borderline hypertensives were significantly higher than those in normotensive men (e.g. for hypertensive versus normotensive men, coagulation factor VII clotting factor activity 111.5 versus 106.1%, plasminogen activator inhibitor-1 level 5.05 versus 3.22 arbitrary units/ml, and protein C level 111.1 versus 107.0%, P < 0.05-0.01). For most of the hemostatic variables we found positive bivariate correlations to blood pressure (P < or = 0.05). Exceptions were von Willebrand factor level (no correlation to blood pressure), and euglobulin fibrinolytic activity (a negative correlation to systolic blood pressure and no correlation to diastolic blood pressure). Significance persisted in the multiple logistic regression analysis with the exception of the relationships between systolic and diastolic blood pressures and fibrinogen level as well as euglobin fibrinolytic activity after adjustment for age. After adjustment for age and body mass index significance for relationships between systolic blood pressure and coagulation factor VII clotting activity as well as protein C level was also lost. CONCLUSIONS: We conclude that the greater than normal cardiovascular risk of hypertensive patients is partly due to an imbalance in hemostasis.

Adult↗

HDL3-mediated inhibition of thrombin-induced platelet aggregation and fibrinogen binding occurs via decreased production of phosphoinositide-derived second messengers 1,2-diacylglycerol and inositol 1,4,5-tris-phosphate.

We demonstrate that physiological concentrations of HDL3 inhibit the thrombin-induced platelet fibrinogen binding and aggregation in a time- and concentration-dependent fashion. The underlying mechanism includes HDL3-mediated inhibition of phosphatidylinositol 4,5-bis-phosphate turnover, 1,2-diacylglycerol and inositol 1,4,5-tris-phosphate formation, and intracellular calcium mobilization. The inhibitory effects of HDL3 on inositol 1,4,5-tris-phosphate formation and intracellular calcium mobilization were abolished after covalent modification of HDL3 with dimethylsuberimidate. Furthermore, they could be blocked by calphostin C and bis-indolylmaleimide, 2 highly selective and structurally unrelated protein kinase C inhibitors. However, the inhibitory effects of HDL3 were not blocked by H89, a protein kinase A inhibitor. In addition, HDL3 failed to induce cAMP formation but stimulated the phosphorylation of the protein kinase C 40- to 47-kD major protein substrate. We observed a close temporal relationship between the HDL3-mediated inhibition of thrombin-induced inositol 1,4,5-tris-phosphate formation, intracellular calcium mobilization, and fibrinogen binding and the phosphorylation of the protein kinase C 40- to 47-kD major protein substrate. Taken together, these findings indicate that the HDL3-mediated inhibition of thrombin-induced fibrinogen binding and aggregation occurs via inhibition of phosphatidylinositol 4,5-bis-phosphate turnover and formation of 1,2-diacylglycerol and inositol 1,4,5-tris-phosphate. Protein kinase C may be involved in this process.

Adult↗

Relationship between plasma viscosity and the severity of coronary heart disease.

Several studies have indicated that plasma viscosity contributes to cardiovascular risk in men. So far, a significant relationship between plasma viscosity and the severity of coronary heart disease has not been found. Thus, the present study is the first to report on the relationship of plasma viscosity and the severity of coronary heart disease. In a collective of 1142 male myocardial infarction patients, plasma viscosity and additional laboratory parameters were determined. Atherosclerotic changes were quantified by coronary angiography. Patients were divided into groups without any, and with one to three stenosed vessels. We found a positive relationship between plasma viscosity and the severity of coronary heart disease, even after adjusting groups for age, fibrinogen, and use of diuretics. Mean plasma viscosity ranged from 1.141+/-0.035 mPa s in patients without stenosed vessels to 1.162+/-0.044 mPa s in patients who had three coronary vessels with stenoses >50%. Differences between the groups were significant (P<0.001 to 0.05), with two exceptions: differences between patients without any and with one stenosed vessel, as well as between patients with one and two stenosed vessels, did not reach the significance level. On the whole, we can give further support to the hypothesis that cardiovascular risk factors and coronary heart disease may be linked by plasma viscosity.

Blood Viscosity↗