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Biomedical subjects

M Moczar

Publications and source records attributed to M Moczar.

At least 37 records · Page 2Linked to original sources

Heparin-binding sites of rat rhabdomyosarcoma cells with low and high metastatic capacity.

Proteins able to bind the iduronate containing glycosaminoglycans: heparin, heparan sulfate and dermatan sulfate, were detected in strongly (RMS 0) and weakly (RMS 8) metastatic rat rhabdomyosarcoma cell lines. The 35S-methionine-labeled proteins solubilized from the cell membranes were chromatographed on Heparin-Ultrogel affinity column. The main retained protein migrated with an apparent molecular size of 19 kDa on polyacrylamide gel electrophoresis from both cell lines. The 19 kDa protein exhibited a higher affinity for iduronate containing glycosaminoglycans than for the glucuronate containing chondroitin sulfates. It was immunologically distinct from acid and basic fibroblast growth factors. The membranes of the RMS 8 cells contained about a two times higher amount of labeled 19 kDa protein than the membranes of the RMS 0 cells. The decreased amount of the labeled heparin-binding proteins in the highly metastatic cell line is in agreement with the previously evidenced decreased receptor-mediated binding of the iduronate containing glycosaminoglycans by these cells.

Animals↗

Comparative study of the precipitation of low density lipoproteins by aortic proteodermatan sulphate and heparin.

The aortic proteoglycans and heparin were shown to form insoluble complexes with human low density lipoproteins (LDL). The effect of temperature, polyethylene glycol and ionic strength on the formation of complexes between porcine aortic proteodermatan sulphate (PDS) and LDL has been studied by laser nephelometry and comparisons made with heparin LDL complexes. Turbidity was a nonlinear function of the quantity of LDL precipitated by PDS. The turbidity of aggregates was constant at temperatures between 2 degrees C and 30 degrees C but increased with temperature above 30 degrees C up to 50 degrees C. The formation of insoluble complexes decreased rapidly with increasing NaCl concentration. Polyethylene glycol enhanced the turbidity at 20 degrees C but not at 37 degrees C. It also increased the resistance of complexes to dissociation by increasing ionic strength. The turbidity of heparin--LDL complexes was linearly correlated with the quantity of precipitated LDL. The heparin-LDL aggregates were less sensitive to modification of temperature and ionic strength than the PDS-LDL aggregates. These results suggest that ionic interactions are weaker in PDS-LDL complexes than in the heparin-LDL complexes. Non-coulombic interactions and/or temperature dependent conformational changes may be involved in the stabilization of supramolecular PDS-LDL aggregates. No such interactions or changes appear to be involved in complex formation between heparin and LDL.

Animals↗

Interactions of exogenous heparan sulfate with tumor cells of different metastatic phenotype.

Heparan sulfate (HS) enhanced the growth of the highly metastatic (HM) 3LL cell line, but not that of the low metastatic (LM) counterpart, in a dose-dependent way. Heparin, chondroitin sulfate, hyaluronate did not produce this effect. At 4 degrees C both cell lines exhibited high affinity binding sites (Kd 10(-8) M) for exogenous HS. Unlike LM cells, the HM ones lost half of the surface-bound HS during the 24-hour incubation at 37 degrees C. HM cells in the exponential growth phase took up the bound HS at lower rate than the LM counterparts. Both cell lines fragmented the exogenous HS intracellularly, but only the HM cells were able to degrade it at the cell surface. The HM cells contained much more heparin-binding proteins--especially in the cell membrane and nuclear fraction--than the LM ones. These results clearly demonstrate that the interactions of tumor cells with exogenous HS are influenced by the invasive phenotype. We suggest also that there could be a correlation between the surface degradation, the slow uptake and the growth-promoting effect of the exogenous HS.

Animals↗

Effect of testicular hyaluronidase on hyaluronate synthesis by human skin fibroblasts in culture.

The effect of hyaluronidase treatment on the incorporation of [3H]glucosamine into hyaluronate in human skin fibroblast cultures was investigated. Fourth passage cells in confluent cultures were treated with hyaluronidase from bovine tests, Streptomyces and leech in Dulbecco's minimum essential medium in the presence of 3% fetal calf serum. The medium was removed from the control (non-treated) and the treated cultures and the washed cell layers were incubated with [3H]glucosamine and [35S]sulfate. [3H]Hyaluronate was separated by DEAE Trisacyl chromatography and identified by specific enzymic assays. Hyaluronidase treatment induced an increase in the amount of labelled hyaluronate secreted into the medium and into the pericellular compartment. This amount reached a plateau with increasing enzyme concentration and with the time of treatment. Oligosaccharides derived from hyaluronate did not produce this effect. The maximal increase was about 3-fold, and was not inhibited by exogenous hyaluronate (25-100 micrograms/ml) or by oligosaccharides from hyaluronate. Cycloheximide (0.03 mM) inhibited hyaluronate synthesis by 18% or less in the control cells and by 50% in the hyaluronidase-pretreated fibroblasts. No significant difference was found in the hyaluronate synthase activity between control and treated cells, at 60 min following treatment, indicating the reversibility of the effect. The persistence of the stimulation required the presence of hyaluronidase. The treatment of cells with specific hyaluronidases (from Streptomyces and leech) or with testicular hyaluronidase did not modify the labelling of the sulfated glycosaminoglycans. The incorporation kinetics of the [3H]glucosamine into labeled hyaluronate and the increased amount of non-labelled hyaluronate determined by radiometric assay indicated a specific stimulation of hyaluronate synthesis in the hyaluronidase-pretreated fibroblast cultures.

Adult↗

Biochemical characterization of elastin in neointimal hyperplasia of rabbit aorta.

Elastin synthesized in response to vascular injury was characterized in terms of its amino acid composition, the biosynthetic labeling of the desmosines and of the heat coacervable polypeptides present in the 2 M urea extract. Neointimal hyperplasia of the chronic variety was induced in rabbit aorta by superficial mechanical lesions. At 4 months following injury the reendothelialized neointimal thickening and the media were excised. Aliquot samples were incubated with [3H] lysine, extracted with 2 M urea, 0.1 M Tris, pH 7.4 and hydrolysed with collagenase. In the residue of the digests the [3H] desmosines were quantified after electrophoretic separation. Elastin was purified from the nonlabeled aliquots of the media and neointimal hyperplasia. It accounted for 60% and 25% of the dry weight of the media and the neointima respectively. Elastin isolated from the media and the neointima had essentially the same amino acid composition. The incorporation of [3H] lysine into desmosines and into coacervable polypeptides indicated that the synthesis of crosslinked elastin is still active in the hyperplasia at 4 months following injury.

Amino Acids↗

Proteoglycans from pig aorta. Comparative study of their interactions with lipoproteins.

Different proteoglycans (PGs) were isolated from pig aorta for aggregation studies with hyaluronic acid and human low-density lipoproteins (LDL). Extraction of the intima-media with 4M-guanidinium chloride and digestion of the residue with collagenase solubilized 91% of aortic hexuronic acid content. From the guanidinium chloride extract two PGs were isolated by ion-exchange and gel-permeation chromatography: proteochondroitin sulphate (PGI) with a protein-core apparent Mr of 250 000 and proteodermatan-chondroitin sulphate (PGII) with a protein-core apparent Mr of 55 000. Only PGI forms high-Mr aggregates with hyaluronic acid. From the collagenase digest two other PGs were isolated: proteoheparan sulphate and proteochondroitin sulphate (PGIII and PGIV respectively). PGIV had a smaller hydrodynamic size than PGI. PGI and PGII formed insoluble complexes with human LDL in the presence of Ca2+. PGIII or PGIV did not form precipitates with the LDL. PGI and PGII, but neither PGIII nor PGIV, were bound to LDL-Sepharose. The main peaks of PGI and PGII were eluted from LDL-Sepharose with 60 mM- and 90 mM-NaCl respectively. The results indicate that aortic PGs have different interacting potentials with lipoproteins, depending on their Mr and their glycosaminoglycan composition.

Animals↗

Solubilization and degradation of extracellular matrix by various metastatic cell lines derived from a rat rhabdomyosarcoma.

Examination by use of WAG syngeneic female rats was made on 4 rat rhabdomyosarcoma sublines expressing different metastatic potentials for their abilities to degrade proteoglycans and glycoproteins of the extracellular matrix (ECM), deposited by corneal endothelial cells and metabolically labeled with [3H]glycosamine and [35S]sulfate. Of the label incorporated in ECM, 10-20% was released in the culture medium in 3 days by the cell lines studied. The proteoglycans, glycosaminoglycans, and glycoproteins released by the cells from ECM were separated and partially characterized. Most of the ECM glycoproteins were recovered in the region of 200,000 (200K) on gel chromatography. Glycopeptides of 10K-20K apparent molecular weight were minor components. The glycosaminoglycan chains of the proteoheparan sulfate were partially hydrolyzed to 20K fragments. Tumor cells increased also the solubilization of the nondegraded matrix macromolecules. About 5-8% of the radioactivity of the ECM remained associated with the tumor cells detached from the ECM. ECM degrading activity of the sublines did not correlate with their ability to colonize the lungs after iv injection but did correlate with their ability to metastasize to the lungs from the primary subcutaneous site.

Animals↗

Biosynthesis of hyaluronic acid, heparan sulfate and structural glycoproteins in hamster lung explants during elastase induced emphysema.

Hyaluronic acid (HA), heparan sulfate (HS) and structural glycoproteins (SGP) were investigated in explant cultures of hamster lungs by studying incorporation of 14C-glucosamine (14C GlcN) on the first and on the 24th day after intratracheal administration of pancreatic elastase. The different 14C radiolabeled macromolecules were extracted sequentially by 0.4 M guanidinium chloride (0.4 M GUA), 4 M GUA and collagenase digestion. At one day following elastase injury, a 4.2 fold increase of 14C GlcN incorporation into HA released in 0.4 M GUA extract and a 2.6 fold increase into HS released in the collagenase digests were observed compared to control tissues; at 24 days, the increased 14C GlcN incorporation into HA and HS persist but to a lesser extent. Polyacrylamide gel electrophoresis and isoelectric focusing carried out on 4 M GUA extracts, demonstrated identical quantitative and qualitative distribution of 14C GlcN between the major SGP (140 and 110 K with pI 7.8 and 4.5 respectively) in the normal and the experimental groups. These results indicate that pulmonary SGP biosynthesis is not modified at one and 24 days after elastase injury, whereas HA and HS biosynthesis are consistently increased. These results suggest a specific role of these macromolecules in emphysematous injury of the lung.

Animals↗

Effect of colchicine on atherosclerosis. II. Biochemical studies on skin biopsies from patients treated perorally with colchicine.

The biosynthesis of proteins and glycosaminoglycans (GAGs) was determined in skin biopsies from atherosclerotic patients treated perorally for 3 months with 1 mg/day colchicine. The biopsies were incubated with 3H-glucosamine and 14C-proline for 5 h and subsequently digested with pronase. In an aliquot of the pronase digest, the specific radioactivity of 14C-proline and 14C-hydroxyproline were determined. The 3H-glucosamine-labeled GAGs were identified by specific enzymic assay and quantified after electrophoretic separation. 3 months treatment with colchicine did not modify the total amounts of proline and hydroxyproline in skin proteins, but diminished the amount of the GAGs as expressed by uronic acid content. Colchicine treatment decreased also the specific radioactivity of proline and hydroxyproline, which reflects a decrease of total protein and collagen synthesis. The incorporation of 3H-glucosamine in the 3H-GAGs was also decreased, mainly in hyaluronic acid. These results suggest that peroral administration of colchicine modifies the synthesis of extracellular matrix proteins and polysaccharides by skin fibroblasts.

Adult↗

The effect of procyanidolic oligomers on the composition of normal and hypercholesterolemic rabbit aortas.

Rabbits were fed with normal (group 1 and 2) and cholesterol rich diets (group 3 and 4) concomitantly to a daily peroral administration of 50 mg/kg procyanidolic oligomers (PCO) to groups 2 and 4. After 10 weeks, the cholesterol content of the blood serum and the excised aortic intima-media were significantly higher in groups 3 and 4 than in groups 1 and 2. The DNA, hydroxyproline, uronic acid contents were similar in aortic dry weight basis in all four groups. The intima-media samples were extracted successively with 0.15 M NaCl, 0.02 M sodium phosphate pH 7.4 (NaCl extract) and with 4 M guanidinium chloride, 0.05 M sodium acetate pH 5.8 prior (G1 extract) and following (G2 extract) hydrolysis of the collagen with collagenase. The cholesterol contents of G1 extracts were higher in groups 2 and 4 than in groups 1 and 3. The cholesterol content of aortic elastin increased with cholesterol feeding (group 3). With simultaneous administration of cholesterol and PCO the cholesterol content of aortic elastin in group 4 was significantly lower than in group 3. The uronic acid contents increased in G1 extracts and in the collagenase digest with PCO treatment of both normal and hypercholesterolemic rabbits. The ratio of dermatan-sulphate to chondroitin-sulphate decreased with hypercholesterolemia (group 3) and with PCO (group 2 and 4). The parallelism between increased cholesterol and uronic acid contents and modified glycosaminoglycan composition in G1 extract, indicate that the interaction of cholesterol with macromolecules of the aorta can be modulated by PCO. This drug modifies the extractibility of aortic cholesterol and glycosaminoglycans and reduces the association of cholesterol to elastin.

Animals↗

[Experimental study of a biological micro-arterial prosthesis].

An arterial prosthesis prepared from human placental arteries, diameter 1.0 mm, length 20 mm, was evaluated after implantation into the infrarenal region of the aorta of the rat. The permeability rate after one year (70%) compares favorably with results after fresh arterial autografts. Histology showed that the prosthesis acted as a matrix colonizable by the tissues of the recipient. The internal surface of the tube was covered by a tissular layer in which fibrillary elements suggestive of elastic fibers were developing.

Animals↗

Structural glycoproteins from rabbit aortic media.

Rabbit aortic intima-media fragments were incubated with [14C]mannose and [3H]fucose for 6 h to detect glycoproteins synthesized in situ. The radioactively labelled and the non-labelled samples were extracted with 0.2 mM-CaCl2/0.5 mM-dithiothreitol/0.5 mM-ATP and chloroform/methanol/water (4:4:1, by vol.). The delipidated residue was extracted with 5 M-guanidinium chloride/0.05 M-dithiothreitol/0.1 M-Tris/0.4% Na2EDTA, pH 7.5, before (extract 1) and after hydrolysis with collagenase (extract 2). The proteins in extracts 1 and 2 were S-carboxamidomethylated and separated by molecular-sieve chromatography, polyacrylamide-gel electrophoresis and isoelectric focusing in sucrose gradients in urea. The apparent molecular weights of glycoproteins were 36 000 (glycoprotein I) from extract 1, 50 000 (glycoprotein II) and 130 000 (glycoprotein III) from extract 2. The molecular weights of the non-labelled and radioactively labelled glycoproteins were identical. Glycoproteins I, II and III contain large amounts of polar amino acids and methionine. They contain neither hydroxyproline nor 3-methylhistidine. A hydroxyproline-containing component of 160 000-apparent-mol.wt. relatively rich in polar amino acids and labelled with incorporated sugars was isolated from extract 1. The incorporation in vitro of radioactive sugars into glycoproteins I, II, III and collagenous glycoproteins indicates that they are synthesized in the surviving aorta by the smooth-muscle cells.

Animals↗

Healing of biodegradable vascular prosthesis. Incorporation of 3H-valine into proteins in the subendothelial scar and host intima-media of rat aorta.

Heparin treated and aldehyde crosslinked rat aorta segments were implanted in infrarenal aorta of homologous rats. One year following aortic replacement, the subendothelial scar and the prosthetic remnants were excised. The scar and the host intima-media were incubated with 3H-valine for 4 h and extracted with 5 M guanidinium chloride--0.05 M dithiothreitol--0.1 M Tris--0.1% EDTANa2 at pH 7.5 prior (Extract 1) and following (Extract 2) hydrolysis of collagen. The radioactivity of extract 1 accounted for approximately 80% of the total label incorporated in the scar and host intima-media. The 3H-label of extract 1 adjusted for the tissue collagen content was about twenty times higher in the scar than in the host aorta. The major 3H protein peaks from Extract 1 of scar and host aorta were of 130 K, 100 K and 70 K apparent molecular weight, based on polyacrylamide gel electrophoresis in SDS. Hydrolysis with 2N KOH of the extraction residue from the host aorta and scar yielded 3H-val-pro dipeptides and hydrolysis with 6N HCl desmosines. The incorporation pattern of 3H-valine into proteins and the presence of elastin synthesized de novo in the scar replacing the prosthesis indicate macromolecular repair of the host aortic wall.

Animals↗