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Biomedical subjects

B Westermark

Publications and source records attributed to B Westermark.

At least 91 records · Page 5Linked to original sources

Localization of platelet-derived growth factor (PDGF) in CHO cells transfected with PDGF A- or B-chain cDNA: retention of PDGF-BB in the endoplasmic reticulum and Golgi complex.

Platelet-derived growth factor (PDGF) is a powerful mitogen for connective tissue cells. It is made up of two polypeptide chains (A and B) and exists in three dimeric forms (AA, AB, and BB). Transfection experiments have indicated that PDGF-AA and -AB are secreted as 30 x 10(3) Mr products, whereas PDGF-BB is processed into a 24 x 10(3) Mr product and remains associated with the cells. Here, CHO cells were transfected with PDGF B- or A-chain cDNA and the intracellular distributions of the respective gene products were compared by indirect immunofluorescence and immunoelectron microscopy, using primary antibodies specific for PDGF B- and A-chain homodimers. PDGF-BB was most conspicuous in stacked Golgi cisternae. It was also found in the endoplasmic reticulum and in lysosomes. Upon treatment of the cells with the microtubule-disruptive drug nocodazole, the Golgi complex was broken up and its stacks of cisternae were dispersed throughout the cytoplasm together with clusters of lysosomes. After this structural disorganization, the concentration of PDGF-BB to the Golgi stacks was even more prominent than before. Weak reactivity for PDGF-AA was detected in the endoplasmic reticulum and groups of vacuoles, both in control and nocodazole-treated cells, whereas Golgi stacks and lysosomes only seldom were positive. The observations suggest that PDGF-BB is processed and retained within the endoplasmic reticulum and Golgi complex. Eventually, it may also be transferred to lysosomes for degradation. In contrast, PDGF-AA is likely to follow a pathway for bulk flow, including rapid passage through the endoplasmic reticulum and Golgi complex, package in secretory vacuoles, and extracellular release by exocytosis.

Animals

Identification and structural analysis of the A type receptor for platelet-derived growth factor. Similarities with the B type receptor.

Binding analyses using 125I-labeled platelet-derived growth factor (PDGF)-AA and PDGF-BB were used to identify a clonal human glioma cell line (U-343 MGa 31L) which expresses the A type but not the B type receptor for PDGF. The glioma cells were devoid of a B type receptor transcript, and immunoprecipitation with an antiserum raised against a B type receptor peptide rendered no signal. Similar analyses using human foreskin fibroblasts, which express both A and B type PDGF receptors, revealed a B type PDGF receptor-specific 5.5-kilobase pair mRNA in a Northern blot experiment, and 160,000 and 180,000 molecular weight components upon immunoprecipitation. A second antiserum, raised against purified porcine PDGF receptor preparations, was reactive with Mr 140,000 and 170,000 components in the U-343 MGa 31L cells, as well as in human fibroblasts. In addition, this antiserum precipitated the Mr 160,000 and 180,000 components from the fibroblasts. Exposure of cells to PDGF-AA, as well as to PDGF-BB, induced an increased rate of degradation of the Mr 170,000 component in the clonal glioma cells and in fibroblasts. The Mr 180,000 component in fibroblasts was degraded only when cells were exposed to PDGF-BB. This allowed the identification of the Mr 170,000 component as the cell surface expressed form of the A type receptor for PDGF. A structural relatedness between the A and B type PDGF receptors was furthermore indicated by similarities in peptide patterns, after limited proteolytic digestion.

Blotting, Northern

PDGF A chain homodimers drive proliferation of bipotential (O-2A) glial progenitor cells in the developing rat optic nerve.

The bipotential glial progenitor cells (O-2A progenitors), which during development of the rat optic nerve give rise to oligodendrocytes and type 2 astrocytes, are stimulated to divide in culture by platelet-derived growth factor (PDGF), and there is evidence that PDGF is important for development of the O-2A cell lineage in vivo. We have visualized PDGF mRNA in the rat optic nerve by in situ hybridization, and its spatial distribution is compatible with the idea that type 1 astrocytes are the major source of PDGF in the nerve. We can detect mRNA encoding the A chain, but not the B chain of PDGF in the brain and optic nerve, suggesting that the major form of PDGF in the central nervous system is a homodimer of A chains (PDGF-AA). PDGF-AA is a more potent mitogen for O-2A progenitor cells than is PDGF-BB, while the reverse is true for human or rat fibroblasts. Fibroblasts display two types of PDGF receptors, type A receptors which bind to all three dimeric isoforms of PDGF, and type B receptors which bind PDGF-BB and PDGF-AB, but have low affinity for PDGF-AA. Our results suggest that O-2A progenitor cells possess predominantly type A receptors, and proliferate during development in response to PDGF-AA secreted by type 1 astrocytes.

Animals

Isoform-specific induction of actin reorganization by platelet-derived growth factor suggests that the functionally active receptor is a dimer.

Human platelet-derived growth factor (PDGF) occurs as three isoforms which are made up of disulfide-bonded A and B chains. The isoforms bind with different affinities to two different but structurally related cell surface receptors. The A type receptor binds all three isoforms (PDGF-AA, PDGF-AB, PDGF-BB) with high affinity, whereas the B type receptor binds PDGF-BB with high affinity, PDGF-AB with lower affinity but does not appear to bind PDGF-AA. We have utilized the differential effects of the three isoforms on actin reorganization and membrane ruffling in human foreskin fibroblasts to probe the idea that ligand-induced receptor dimerization is associated with receptor activation. Actin reorganization was found to be induced only by PDGF-AB and PDGF-BB and is therefore likely to be mediated by the B type receptor. Simultaneous addition of PDGF-AA, or downregulation of the A type receptor blocked the effect of PDGF-AB but not that of PDGF-BB. This is compatible with a model by which PDGF-AB binds to and dimerizes one A and one B type receptor; PDGF-AB therefore requires A type receptors in order to be functionally active at physiological concentrations. In cells with down-regulated A type receptors, high concentrations of PDGF-AB inhibited the effect of PDGF-BB on actin reorganization. We believe that this is due to a monovalent binding of PDGF-AB to the B type receptors which prevents PDGF-BB from dimerizing the receptors.(ABSTRACT TRUNCATED AT 250 WORDS)

Actins

Induction of cyclic AMP synthesis by forskolin is followed by a reduction in the expression of c-myc messenger RNA and inhibition of 3H-thymidine incorporation in human fibroblasts.

We have studied the effect of increased intracellular levels of cyclic AMP on the growth response to platelet-derived growth factor (PDGF) of human foreskin fibroblasts in culture. It was found that forskolin, a potent stimulator of adenylate cyclase activity, inhibits the stimulatory effect of PDGF on 3H-thymidine incorporation with a dose dependence similar to that observed with regard to cyclic AMP formation. A time-course study indicated that forskolin has no effect on ongoing DNA synthesis but affects events in the prereplicative phase. The cell-cycle block induced by forskolin was found to be reversible; after removal of the drug, DNA synthesis was initiated after a lag period, similar to that of the prereplicative phase of control cells. Forskolin had no effect on PDGF binding, receptor autophosphorylation, or c-fos mRNA expression. However, a reduction in PDGF-induced c-myc mRNA expression was observed in cultures given forskolin. Forskolin was also found to have a marked stimulatory effect on the expression of interferon-beta 2 mRNA expression. However, we were unable to demonstrate that the growth-inhibitory effect of forskolin is mediated by interferon-beta. In conclusion, an increase in cAMP levels leads to a reversible inhibition of PDGF-induced DNA synthesis in human fibroblasts, which may be related to an inhibition of c-myc mRNA expression.

Cell Line

Patterns of proto-oncogene expression in human glioma cell lines.

Previously reported studies have suggested that variations in the pattern of proto-oncogene expression within a specific tumor type may denote an underlying difference in the biology and clinical behavior of those tumors. To more sensitively characterize malignant tumors of the central nervous system, we have used Northern blot hybridization analysis to determine the patterns of expression of seven proto-oncogenes in 20 cell lines established from biopsy specimens of patients with malignant glioma. The following proto-oncogenes are expressed at detectable levels in 30 micrograms of total RNA from most glioma cell lines examined: c-myc (20/20), c-mil/raf-1 (18/18), neu (19/20), c-erbB (19/20), and c-myb (17/20). In contrast, only half of the cell lines expressed detectable c-sis (10/20). In none of the cell lines tested was N-myc (0/20) mRNA detected. Morphologic analysis of these 20 cell lines revealed three different growth patterns: bipolar, epithelial, and pleomorphic-glial. Detectable levels of c-sis mRNA typically occurred with either an epithelial or pleomorphic-glial morphology. The pleomorphic-glial subgroup was also characterized by the expression of glial fibrillary acidic protein.

Blotting, Northern

Structural and functional aspects of platelet-derived growth factor and its role in the pathogenesis of glioblastoma.

The platelet-derived growth factor (PDGF) family consists of three different dimeric forms, AA, BB, and AB, of the two constituent polypeptide chains, A and B. These interact with two different cell surface receptors that, in part, mediate different cellular functions. The various forms of PDGF, as well as the receptors, are expressed at high frequency in glioblastoma multiforme, and it has been suggested that the growth of this tumor might be affected by autocrine loops involving PDGF and its receptors. The present paper focuses on recent discoveries regarding the family of PDGF ligands and receptors, as well as reviews results concerning PDGF-dependent autocrine growth in experimental and spontaneous glioblastoma.

Cell Transformation, Neoplastic

Tumor necrosis factor-induced expression of platelet-derived growth factor A-chain messenger RNA in fibroblasts.

Recombinant tumor necrosis factor (rTNF) induced a transient increase in the expression of the PDGF A-chain mRNA in FS-4 fibroblasts, as determined by Northern blot hybridization. The mRNA transcripts were of the expected sizes 1.9, 2.3, and 2.8 kb. Increased levels of the PDGF A-chain mRNA were detected 1, 2, and 4 h after addition of rTNF, the highest level being detected after 2 h. After 8 h the mRNA level was similar to that in control cultures. No PDGF B-chain mRNA (c-sis) could be detected following addition of rTNF. There was also an accumulation of PDGF receptor-competing activity in the medium of rTNF-exposed fibroblasts, suggesting that rTNF also induced the synthesis and release of functional PDGF A-chain homodimers (PDGF-AA). The fibroblast growth stimulatory activity in supernatants from rTNF-exposed fibroblasts could be neutralized by antiserum against rTNF, and thus rTNF seemed to be able to act as a direct mitogen. Hence rTNF-induced PDGF-AA is not the main mediator of rTNF's mitogenicity under the conditions investigated.

Binding, Competitive

Platelet-derived growth factor: three isoforms and two receptor types.

Platelet-derived growth factor (PDGF) is a dimeric molecule that occurs as homodimers or heterodimers of related polypeptide chains. Recent data indicate that the isoforms have different functional activities because they bind with different affinities to two distinct receptor types. The activation of at least one of the PDGF receptor types involves receptor dimerization. Furthermore, there are indications that cells respond to PDGF in vivo only when they have been previously stimulated to express the corresponding receptor.

Animals

Structural and functional aspects of the receptors for platelet-derived growth factor.

Platelet-derived growth factor (PDGF) is a 30 kDa dimer of disulfide-bonded A and B chains. Three isoforms of PDGF have been isolated (PDGF-AA, PDGF-AB and PDGF-BB). These bind with different affinities and specificities to two structurally related cell surface receptors, viz. the alpha-receptor and the beta-receptor. The receptors are transmembrane proteins with an intracellular, ligand-stimulatable protein tyrosine kinase domain. Activation of the receptors is intimately associated with receptor dimerization, and available data suggest that PDGF is a divalent ligand such that one molecule of PDGF binds and dimerizes two receptor molecules. Stimulation of PDGF receptors leads to a cascade of cellular events, which have been shown to require an intact receptor tyrosine kinase activity. However, ligand-induced internalization and degradation of the beta-receptor occur essentially independent of the receptor kinase activity. Receptor activation leads to the phosphorylation on tyrosine residues of three enzymes, probably by direct phosphorylation: phospholipase C-gamma, phosphatidylinositol 3' kinase and Raf-1. In certain cells, PDGF beta-receptor expression is inducible such that cells in normal tissue in vivo do not express receptors; only in inflammatory lesions or when cells are explanted in vitro, are receptors being expressed. Transformation by the v-sis oncogene is mediated by an autocrine PDGF-like growth factor. Although both the alpha- and beta-receptors are structurally related to the v-fms and v-kit oncogenes, it is not known if the PDGF receptors have a transforming potential. In conclusion, the finding of three isoforms of PDGF that interact with two structurally related receptors implies a finely tuned regulatory network, the role of which in cell growth and transformation remains to be clarified.

Amino Acid Sequence

cDNA cloning and expression of the human A-type platelet-derived growth factor (PDGF) receptor establishes structural similarity to the B-type PDGF receptor.

The primary structure of the human A-type receptor for platelet-derived growth factor (PDGF) has been determined. A 6.5-kilobase (kb) transcript was identified through low-stringency hybridization with a probe derived from the B-type PDGF receptor cDNA. The sequence of a cDNA clone corresponding to the 6.5-kb transcript contains an open reading frame that predicts a 1089-amino acid growth factor receptor-like molecule, which displays 44% overall amino acid similarity with the PDGF B-type receptor. The two receptors have a similar domain organization, with five immunoglobulin-like domains extracellularly and an intracellular split protein tyrosine kinase domain. Transfection of the new cDNA into COS cells led to the expression of a protein specifically recognized by an antiserum previously shown to react with the PDGF A-type receptor. The expressed protein was shown to display high-affinity binding of all three 125I-labeled dimeric forms of PDGF A and B chains in a manner that is characteristic for the PDGF A-type receptor.

Amino Acid Sequence

Production of platelet-derived endothelial cell growth factor by normal and transformed human cells in culture.

Platelet-derived endothelial cell growth factor (PD-ECGF) is a 45-kDa endothelial cell mitogen which has angiogenic properties in vivo. We report here that human foreskin fibroblasts, a human squamous cell carcinoma cell line, and 2 out of the 3 human thyroid carcinoma cell lines investigated produce PD-ECGF, whereas 21 other cell lines examined do not. The positive cell lines contained a 1.8-kilobase PD-ECGF mRNA, and a 45-kDa protein could be demonstrated in lysates of the cell lines by immunoblotting and immunoprecipitation using a specific antiserum against PD-ECGF. Furthermore, the cell lysates contained mitogenic activity for endothelial cells that was neutralized by the PD-ECGF antiserum. PD-ECGF was found to be secreted only slowly from the producer cells, consistent with the previous finding that the primary translation product lacks a signal sequence. The restricted expression and intracellular sequestration of PD-ECGF imply a strictly controlled function in endothelial cell proliferation and angiogenesis. Aberrant production of PD-ECGF may play a role in tumor angiogenesis.

Animals

Platelet-derived growth factors: a family of isoforms that bind to two distinct receptors.

Platelet-derived growth factor (PDGF) is a mitogen for connective tissue cells and occurs as disulphide-bonded homodimers or heterodimers of related polypeptide chains. Recent data indicate that the isoforms have different functional activities due to the fact that they bind with different affinities to two distinct receptor types. The frequent expression of PDGF and PDGF receptors in normal as well as transformed cells, suggests roles for PDGF in autocrine and paracrine stimulation of cell growth in vivo.

Animals