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Platelet-derived growth factor in human glioma

✍ Scribed by Bengt Westermark; Carl-Henrik Heldin; Monica Nistér


Publisher
John Wiley and Sons
Year
1995
Tongue
English
Weight
909 KB
Volume
15
Category
Article
ISSN
0894-1491

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✦ Synopsis


Platelet-derived growth factor (PDGF) is a 30 kDa protein consisting of disulfide-bonded dimers of Aand B-chains. PDGF receptors are of two types, a-and @-receptors, which are members of the protein-tyrosine kinase family of receptors. The receptors are activated by ligand-induced dimerization, whereby the receptors become phosphorylated on tyrosine residues. These form attachment sites for signalling molecules, which inter alia activate the Ras*Raf pathway. PDGF has important functions in development and is required for a proper timing of oligodendrocyte differentiation. The v-sis oncogene of simian sarcoma virus (SSV) is a retroviral homolog of the B-chain gene, and induces transformation by an autocrine activation of PDGF receptors at the cell surface. SSV induces malignant glioma in experimental animals, suggesting a role for autocrine PDGF in glioma development. PDGF and PDGF receptors are frequently coexpressed in human glioma cell lines. Specific and nonspecific PDGF antagonists block the growth of some glioma cell lines in vitro and in vivo, suggesting that autocrine PDGF is involved in transformation and tumorigenesis. In situ studies of human gliomas show overexpression of a-receptors in glioma cells of high-grade tumors. In a few cases, overexpression is caused by receptor amplification. Since high-grade glioma cells also express the PDGF A-chain, an autocrine activation of the a-receptor may drive the proliferation of glioma Cells in v i V 0 .


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