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Biomedical subjects

P Bornstein

Publications and source records attributed to P Bornstein.

At least 127 records · Page 7Linked to original sources

Endothelial cells secrete a novel collagen type in vitro independently of prolyl hydroxylation.

Endothelial cells from bovine aorta, vena cava, and cornea secrete a novel collagen in vitro (Sage et al., 1980). Endothelial collagen (EC), which is sensitive to pepsin and to several neutral proteases, exhibited an additional unusual property in its mode of secretion. In the absence of added sodium ascorbate, EC was secreted by both aortic and corneal endothelial cells at levels which were very similar to those observed in cultures supplemented with this vitamin. In contrast, the secretion of type III procollagen, which normally constitutes 75-80% of collagenous protein in the culture medium, was significantly decreased in ascorbate-deficient cultures. Incubation of aortic endothelial cells with alpha, alpha'-dipyridyl, an inhibitor of prolyl and lysyl hydroxylases, reduced the extent of prolyl hydroxylation in total culture medium protein by 98% but also did not affect the secretion of EC. The secretion of EC by endothelial cells appears to be independent of a requirement for prolyl hydroxylation. This property differs markedly from the secretory characteristics of the interstitial procollagens and more closely resembles that described for type IV (basement membrane) procollagen.

2,2'-Dipyridyl↗

Epidermal growth factor stimulates the phosphorylation of synthetic tyrosine-containing peptides by A431 cell membranes.

A431 cell membranes phosphorylate a synthetic peptide (Arg-Arg-Leu-Ile-Glu-Asp-Asn-Glu-Tyr-Thr-Ala-Arg-Gly) in which residues 2--12 correspond to the sequence of the reported site of tyrosine phosphorylation in pp60src. Epidermal growth factor stimulates the phosphorylation of this peptide 2-fold over basal levels in a dose-dependent fashion. Phosphorylation is linear for approximately 3 min at 30 degrees C and occurs on the tyrosine residue. Kinetic analysis of the phosphorylation reaction indicates that epidermal growth factor increases the average Vmax from 3.8 to 7.5 nmol/min per mg and slightly decreases the average Km from 0.53 mM to 0.28 mM. A number of other peptides analogous to this tridecapeptide are also phosphorylated by A431 membranes. The data suggest that peptides with sequences similar to the site of tyrosine phosphorylation in pp60src are preferred substrates for the kinase in these membranes. Thus, the epidermal growth factor-stimulated protein kinase has the potential to interact with and phosphorylate pp60src. However, the A431 membranes also phosphorylate a tyrosine-containing peptide of totally unrelated sequence, suggesting that the kinase possesses a broad specificity for peptide phosphorylation that may not reflect its specificity with protein substrates.

Carcinoma, Squamous Cell↗

Biochemical and ultrastructural studies of proteoheparan sulfates synthesized by PYS-2, a basement membrane-producing cell line.

The mouse teratocarcinoma-derived cell line, PYS-2, has been shown to produce laminin, a basement membrane-specific glycoprotein. In these studies we demonstrate that PYS-2 cells synthesize and secrete into the culture medium a proteoglycan which contains only heparan sulfate as its sulfated polysaccharide side chains, as well as type IV procollagen and laminin. The apparent molecular weights of the proteoglycan and its heparan sulfate side chain were estimated to be 400,000 and 25,000, respectively, by gel chromatography. A proteoheparan sulfate with properties closely similar, if not identical, to those of the proteoglycan in the medium, together with two heparan sulfate single chains of different molecular size, were extracted from the cell layer with 2% SDS in the presence of protease inhibitors. Ultrastructurally, a fine fibrillar intercellular matrix was recognized which contained discrete 100-200 A diameter ruthenium red-positive granules interspersed throughout the filamentous meshwork. The PYS-2 cultures were shown by immunofluorescence to react with antibodies against the heparan sulfate-containing proteoglycan isolated from the mouse EHS sarcoma (Hassell, J. R., P. G. Robey, H. J. Barrach, J. Wilczek, S. I. Rennard, and G. R. Martin. 1980. Proc. Natl. Acad. Sci. U. S. A. 77:4494-4498). Immunoelectron microscopic examination, using the same antibodies, revealed that the proteoheparan sulfate was located not only at the edges but also within the interstices of the matrix. These findings indicate that PYS-2 cells synthesize and secrete a proteoglycan with properties similar to those of basement membrane proteoglycan. These cells may therefore serve as a useful model system for the study of the biosynthesis and structure of basement membranes.

Animals↗

Thrombospondin: synthesis and secretion by cells in culture.

Thrombospondin, a high molecular weight glycoprotein secreted by platelets in response to activation by thrombin, has been identified by immunofluorescence in bovine aortic endothelial cells, human foreskin fibroblasts, and human aortic smooth muscle cells. Immunofluorescence patterns were found to be similar using antisera raised to thrombospondins purified either from bovine aortic endothelial cells or from human platelets. Radioimmune precipitation of pulse-labeled cellular proteins confirmed the presence of thrombospondin in positively stained cells. A sensitive quantitative enzyme-linked immunosorbent assay (ELISA) was developed and used to determine that the accumulation of secreted thrombospondin was similar for endothelial cells and fibroblasts but was higher for smooth muscle cells. The presence of thrombospondin in a variety of cells suggests that its function may not be limited to an involvement in platelet interactions.

Animals↗

Isolation and characterization of a glycoprotein secreted by aortic endothelial cells in culture. Apparent identity with platelet thrombospondin.

A high molecular weight glycoprotein, reported to be secreted by endothelial cells (Sage, H., Crouch, E., and Bornstein, P. (1979) Biochemistry 18, 5433-5442), has been purified to apparent homogeneity from culture medium of adult bovine aortic endothelial cells. Purification was achieved by ammonium sulfate fractionation and successive chromatography on gelatin-Sepharose, Sephacryl S-300, and hydroxylapatite. The glycoprotein was found to be a disulfide-linked oligomer with a subunit molecular weight of 190,000, as judged by its mobility on sodium dodecyl sulfate (NaDodSO4)-polyacrylamide gels. The endothelial cell-derived protein is distinct from high molecular weight serum glycoproteins such as fibronectin and alpha 2-macroglobulin. However, immunological and structural studies indicate that the Mr = 190,000 glycoprotein is either identical with or closely related to thrombospondin, a glycoprotein contained in platelet granules and released in response to thrombin-induced aggregation.

Amino Acids↗

Phosphotyrosyl-protein phosphatase. Specific inhibition by Zn.

Epidermal growth factor stimulates a cyclic AMP-independent protein kinase associated with membrane vesicles derived from human epidermoid carcinoma cells (Carpenter, G., King, L., Jr., and Cohen, S. (1979) J. Biol. Chem. 254,. 4884-4891). The kinase specifically phosphorylates tyrosyl residues in a Mr = 150,000 membrane protein (Ushiro, H., and Cohen, S. (1980) J. Biol. Chem. 255, 8363-8365). We show that the reverse reaction, catalyzed by a phosphotyrosyl-protein phosphatase associated with the membrane, is inhibited by Zn2+. Dephosphorylation of phosphotyrosyl residues in the Mr = 150,000 protein is completely inhibited by Zn2+ at concentrations as low as 10 microM, whereas other divalent cations have no substantial effect. Inhibition of the phosphatase was reversed by EDTA and the activity in membrane preparations was increased by EDTA or fluoride, agents commonly thought to be phosphatase inhibitors. Acid hydrolysis of the membrane proteins followed by analysis of phosphoamino acids by two-dimensional electrophoresis revealed that the phosphatase hydrolyzed phosphotyrosyl in preference to phosphoseryl residues. The specific inhibition of this phosphatase activity by low concentrations of Zn2+ may be indicative of the physiological importance of Zn2+ in the regulation of cellular phosphotyrosyl-protein levels.

Carcinoma, Squamous Cell↗

Susceptibility of type V collagen to neutral proteases: evidence that the major molecular species is a thrombin-sensitive heteropolymer, [alpha 1(V)]2 alpha 2(V).

The susceptibility of human type V collagen to several neutral proteases was examined. Thrombin cleaved both the alpha 1(V) and alpha 2(V) chains of this protein at 34 degrees C, producing two pairs of fragments with apparent molecular weights of 95000 and 10000 on sodium dodecyl sulfate--polyacrylamide gel electrophoresis. Two-dimensional 125I-labeled peptide mapping of the larger fragments demonstrated that the upper band [which comigrated with alpha 1(I)] was derived from both the alpha 1(V) and alpha 2(V) chains, while the other component [which comigrated with alpha 2(I) was a product of alpha 1(V) alone. Cleavage of type V collagen, containing alpha 3(V) chains, with thrombin produced an analogous pattern with three high molecular weight bands. Chymotrypsin and trypsin cleaved type V collagen at 37 degrees C but not at lower temperatures. Digestion of type V collagen with elastase at 37 degrees C resulted in selective proteolysis of alpha 2(V), leaving alpha 1(V) essentially intact. Pepsin treatment of type V collagen from which alpha 2(V) had been removed by elastase treatment resulted in nearly complete degradation of alpha 1(V). These data support the hypothesis that a major fraction of native type V collagen is a heteropolymer with the chain composition [alpha 1(V)]2 alpha 2(V). Cleavage of type V collagen by thrombin may have physiologic significance in that breakdown of pericellular matrix may be an important step in the response of a tissue to injury.

Chymotrypsin↗

Coordinate transcriptional regulation of type I procollagen genes by Rous sarcoma virus.

Chicken embryo fibroblasts infected with a strain of Rous sarcoma virus containing a temperature-sensitive mutation in the gene coding for pp60src, a protein kinase, undergo changes in collagen synthesis within 4 h after a temperature shift. Cells shifted from the restrictive to the permissive temperature for transformation show decreasing levels of collagen synthesis and increasing levels of kinase activity; the reverse occurs when infected cells are shifted from the permissive to the restrictive temperature. Levels of type I procollagen mRNAs coding for pro alpha 1 and pro alpha 2 chains, measured by hybridization to nick-translated cloned alpha 1 and alpha 2 cDNA, decreased simultaneously soon after a reduction in temperature and reached a new steady state at about 50 h after the shift. In order to test for regulation at the transcriptional level, nuclei were isolated from normal and Rous sarcoma virus-transformed chicken embryo fibroblasts and allowed to transcribe in the presence of [alpha-32P]UTP. Procollagen mRNA sequences in newly synthesized and in total RNA from transformed cell preparations were both about 5-fold lower than the levels in normal cell preparations. We conclude that the coordinate decrease in procollagen mRNAs observed in Rous sarcoma virus-transformed chicken embryo fibroblasts is caused primarily by a decrease in the transcription of the type I procollagen genes, a decrease which is directly or indirectly mediated by the pp60src protein kinase.

Animals↗

Characterization of cell matrix associated collagens synthesized by aortic endothelial cells in culture.

Several collagen types have been isolated and characterized from bovine aortic endothelial cells and their associated extracellular matrix. Two collagens, which comigrated on sodium dodecyl sulfate-polyacrylamide gel electrophoresis with the alpha 1(III), alpha 1(V), and alpha 2(V) collagen chains, were isolated by salt precipitation from pepsin digests of cell layer proteins. Two of these chains were further purified by molecular-sieve and ion-exchange chromatography and were identified as alpha 1(III) and alpha 1(V) by one-dimensional peptide maps generated with mast cell protease and cyanogen bromide. In contrast to type III collagen, which was found in both the culture medium and cell layer, type V collagen appeared to be restricted to the cell layer. In addition to their occurrence as cell layer constituents, both types III and V collagens were localized to an extracellular matrix after the cells had been removed from the culture dishes by detergent. Preliminary studies based on peptide maps comparing type III collagen from the cell layer and culture medium provide evidence for structural heterogeneity within this collagen type.

Animals↗

A new mapping technique for collagen chains.

A new, highly sensitive method for peptide mapping of collagen chains has been developed which utilizes a modification of the radioiodination technique in polyacrylamide gels described by Elder et al. (1977b). Optimal conditions include the use of the Bolton-Hunter reagent to produce 125I-labeled collagen with the enzyme proteinase K, prior to resolution of the cleavage products by two-dimensional electrophoresis and chromatography. Unambiguous results were obtained by restricting comparison among collagens to a given set which was radioiodinated using the same procedure, i.e., in solution, or in a dried or hydrated gel. Iodination of collagens in solution, followed by proteinase K digestion, resulted in highly reproducible maps which were free of background contamination and which permitted characterization of chains with a defined mobility of SDS-PAGE after the iodination procedure. This technique has provided additional evidence that the alpha 1, alpha 2, and alpha 3 chains of type V collagen are structurally unique. In addition, relationships among several fragments from pepsin-treated type IV collagen, which consists of two distinct chains, could be further elucidated.

Collagen↗

Regulation of protein synthesis: translational control by procollagen-derived fragments.

Previous studies have shown that a type I procollagen-derived peptide, called pN alpha 1(I)-Col 1, selectively inhibits collagen synthesis by fibroblasts in culture and the translation of procollagen mRNA in a rabbit reticulocyte lysate system. We prepared the 10,700-dalton peptide from dermatosparactic calf skin, which contained high levels of incompletely processed type I procollagen, by collagenase digestion. Time-course and dose-response studies showed that the peptide specifically inhibited the translation of procollagen mRNA in preparations of human fibroblast RNA while not affecting the translation of globin mRNA or of other messenger RNAs in fibroblast RNA. After reduction and alkylation, the peptide lost its specificity but became a nonspecific inhibitor of translation. Enzymatic cleavage enabled us to localize the nonspecific activity to a short sequence -Pro-Thr-Asp-Glu, an assignment confirmed by peptide synthesis. Using pactamycin, a specific inhibitor of translational initiation, we showed that the intact peptide acts on procollagen mRNA translation by inhibition of polypeptide chain elongation or termination, or both, whereas the nonspecific inhibitory activity of the unfolded peptide and its derivatives can be attributed to an inhibition of chain initiation. Although the native peptide may function in feedback regulation of collagen synthesis, the physiological role of the lower molecular weight fragments, if any, is uncertain.

Amino Acid Sequence↗

Tyrosylprotein kinase and phosphatase activities in membrane vesicles from normal and Rous sarcoma virus-transformed rat cells.

Membrane vesicles; isolated from normal and Rous sarcoma virus-transformed rat cells, have an associated cyclic-AMP independent kinase that phosphorylates a Mr 37,000 protein in vesicles from normal cells and proteins of Mr 37,000, 50,000, and 67,000 in vesicles from transformed cells. Proteins in vesicles from normal and transformed cells contain 9% and 77%, respectively, of their labeled phospho amino acids as phosphotyrosine. Thus, isolation of vesicles and subsequent incubation with [gamma-32P]ATP enriches the proportion of labeled phosphotyrosine in proteins (relative to other phospho amino acids) by two orders of magnitude over that found in intact cells. The in vitro phosphorylation of each of these proteins is enhanced in the presence of 10 microM Zn2+, a phosphotyrosylprotein phosphatase inhibitor. From these studies it appears that membrane vesicles may be a valuable system for examination of transformation-specific phosphorylation of proteins.

Amino Acids↗

Correlation of collagen synthesis and procollagen messenger RNA levels with transformation in rat embryo fibroblasts.

A line of normal rat embryo fibroblasts was transformed with N-methyl-N'-nitro-N-nitrosoguanidine (a chemical carcinogen), SV40 and polyoma virus (two DNA viruses), and Rous sarcoma virus (an RNA tumor virus). In this study, we report a comparison of the levels of collagen synthesis and procollagen messenger RNA (mRNA) in 13 lines selected after transformation with one of these agents. Collagen synthesis and procollagen mRNA levels were compared with the degree of transformation determined from morphology, saturation density, growth in agarose, and tumorigenicity in nude mice. Each class of transformants had a characteristic level of collagen synthesis; this level correlated inversely with the degree of transformation of the rat embryo fibroblasts. In N-methyl-N'-nitro-N-nitrosoguanidine and SV40 transformants which were moderately transformed, collagen synthesis was hardly affected, but, in polyoma virus and Rous sarcoma virus transformants which were more severely transformed, collagen synthesis was 30 to 48% and 12 to 25%, respectively, of control levels. Type I procollagen mRNA activity measured in RNA from nine of the lines by an in vitro translation assay also decreased with increasing severity of transformation. Procollagen mRNA levels were reduced to about one-half of control levels in one SV40 transformant and to 17 to 23% of controls in polyoma virus and Rous sarcoma virus transformants. We conclude that, in this series of rat fibroblast lines, transformation with different agents resulted in characteristic levels of collagen synthesis and that collagen synthesis was most reduced in the cells which were most transformed by other criteria.

Animals↗

Altered secretion of type III procollagen in a form of type IV Ehlers-Danlos syndrome. Biochemical studies in cultured fibroblasts.

Cultured dermal fibroblasts from a woman with one variety of type IV Ehlers-Danlos syndrome synthesized type III procollagen but fail to secrete the bulk of the protein. Although total collagen production is similar to that of controls, the affected cells retain almost twice as much collagen as controls. The additional retained protein is a disulfide-boned collagenous trimer that remains disulfide-linked after limited proteolysis with pepsin and, after pepsin treatment, migrates with type III collagen on polyacrylamide gel electrophoresis. Affected cells have markedly increased staining with antibodies directed against type III procollagen. These studies indicate that decreased secretion of type III procollagen that is synthesized can result in the clinical syndrome of type IV Ehlers-Danlos syndrome.

Adult↗

A unique, pepsin-sensitive collagen synthesized by aortic endothelial cells in culture.

A unique collagen, designated EC, has been isolated from the culture medium of adult bovine aortic endothelial cells. After diethylaminoethylcellulose chromatography of [3H]proline-labeled culture medium, three non-disulfide-bonded bacterial collagenase-sensitive components with apparent Mr of 177000 (EC 1), 125000 (EC 2), and 100000 (EC 3) were demonstrated. Molecular sieve chromatography, cyanogen bromide cleavage, and two-dimensional peptide mapping of radioiodinated EC fragments produced by protease digestion suggest that the lower molecular weight components originate from EC 1. Both EC 1 and EC 2 were digested by pepsin within 10 min to products of less than 60000 molecular weight, under conditions which supported only limited proteolysis of other native collagens. A pepsin-resistant fragment of Mr 50000, derived from a digest of EC 2, contained equal amounts of hydroxyproline and proline, suggesting that at least a portion of the endothelial collagen contains a stable, collagen-like triple helix. Comparative mapping using mast cell protease and cyanogen bromide cleavage, followed by polyacrylamide gel electrophoresis, indicates that the primary structure of this collagen differs from that of other known collagen types.

Animals↗

X-linked cutis laxa: defective cross-link formation in collagen due to decreased lysyl oxidase activity.

We studied several members of a family with an X-linked form of cutis laxa; the affected males have mild skin laxity, a characteristic facies, skeletal abnormalities, structural abnormalities of the genitourinary tract, and low serum copper levels. The activity of lysyl oxidase, a copper-dependent enzyme involved in cross-link formation in collagen, was decreased in skin-biopsy specimens (13 to 26 per cent of normal) and in culture medium from cells to two affected males (15 to 20 per cent of normal). Immunoreactive lysyl oxidase from skin of both patients was virtually undetectable by immunodiffusion assay. The amounts of lysyl-derived aldehydes (the product formed in collagen and elastin by lysyl oxidase) and of cross-links formed from these products were decreased in dermal fibroblasts in culture. Collagen extractability from these cells was increased in culture. These findings suggest that lysyl oxidase deficiency provides the biochemical basis of the X-linked form of cutis laxa.

Amino Acid Oxidoreductases↗

Location of a collagen-binding domain in fibronectin.

Preferential labeling of COOH-terminal sequences in newly synthesized fibronectin was achieved by short term incorporation of radiolabeled amino acids in the presence of pactamycin, an inhibitor of polypeptide chain initiation. The labeled fibronectin was then cleaved with cathepsin D under conditions that yield a large (137,000-dalton) fragment that lacks collagen-binding properties, and a smaller (72,000-dalton) fragment that retains the ability of fibronectin to bind to collagen. Determination of the relative specific radioactivities of the two fragments leads us to conclude that the collagen-binding domain in fibronectin is located in the NH2-terminal third of the polypeptide chain and not in a COOH-terminal region as previously indicated by other structural studies.

Amniotic Fluid↗

Studies of morphologically atypical ("sprouting") cultures of bovine aortic endothelial cells. Growth characteristics and connective tissue protein synthesis.

Morphologic and biochemical studies were performed on cultures of bovine aortic endothelial cells which had developed a second growth pattern that has been referred to as "sprouting" (Gospodarowicz and Mecher, '78; Schwartz '78). These morphologically atypical cells undergrew the intact endothelial cell monolayer and appeared only after the cells had reached confluence. They were ultrastructurally very similar to endothelial cells, but synthesized reduced amounts of fibronectin and a predominance of type I procollagen, rather than the types III and IV procollagens synthesized by monolayer endothelial cells. It is suggested that these cells represent phenotypically altered endothelial cells that differ in biosynthesis of secreted proteins and display a reduced contact-inhibition.

Animals↗