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Suramin binds to platelet-derived growth factor and inhibits its biological activity

✍ Scribed by Markus Hosang


Book ID
102302566
Publisher
John Wiley and Sons
Year
1985
Tongue
English
Weight
494 KB
Volume
29
Category
Article
ISSN
0730-2312

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✦ Synopsis


The polyanion suramin was recently found to inhibit binding of '251-PDGF (platelet-derived growth factor) to Balb/c 3T3 cell membranes. Cultured Swiss 3T3 cells were used to investigate the mode of action of suramin and to monitor its effect on the biological activity of PDGF. Evidence is presented that suramin inhibits cellular binding of PDGF by binding to PDGF itself, thereby preventing it from binding to its cell surface receptor: First, while suramin inhibited '*'I-PDGF binding with a half maximum inhibition concentration of -60 p M or 90 pgiml in a simultaneous competition assay, it was inactive in a sequential radioreceptor assay, in which an inhibitor is expected to be active if it interacts with the receptor (even with relatively low affinity) but to be inactive if it interacts with PDGF. Second, suratnin prevented immunoprecipitation of "'I-PDGF in a dosedependent manner, with a half maximum effective concentration of -SO pM. Furthermore, suramin efficiently dissociated '2'1-PDGF bound to its cell surface receptor, whereas unlabeled PDGF even in large excess was virtually inactive. This is also in line with the proposed direct interaction between PDGF and suramin, since such an interaction can be envisaged to induce a conformational change in the PDGF-receptor complex, resulting in an increased off-rate of the complex. Reduced '251-PDGF binding in the presence of suramin correlated directly with a suramin dose-dependent inhibition of PDGF-induced incorporation of k t h y m i d i n e into quiescent Swiss 3T3 cells and of the proliferation of these cells.

These observations suggest that suramin, by complexing with PDGF, renders this mitogen unable to bind to its physiological receptor and, thereby, prevents PDGF-initiated biological activities.


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Protamine sulfate blocked 125I-PDGF binding to its specific physiological receptor on Swiss mouse 3T3 cells. Reduced 125I-PDGF binding in the presence of protamine sulfate correlated directly with a protamine sulfate dose-dependent decrease in the PDGF-dependent incorporation of [3H]-thymidine into