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Heparin potentiates the action of plasma membrane-associated growth stimulatory activity
1Department of Biochemistry and Molecular Biology, College of Medicine, University of Cincinnati, Ohio 45267-0522.
Abstract:
Plasma membranes prepared from mouse liver have been previously shown to contain growth stimulatory activity as determined with cultured mouse fibroblasts. This growth stimulatory activity, termed plasma membrane-associated growth stimulatory activity (PMGA), is highly mitogenic in the presence of platelet-poor plasma. We now demonstrate that the growth stimulatory action of PMGA is dramatically enhanced by the addition of heparin. The half-maximal effect of heparin was observed at 1-3 micrograms/ml. The synergistic effect was seen in two distinct assays; the stimulation of DNA synthesis in quiescent cells, and an increase of cell number over a 3-day culture period. Heparin, by itself, does not have any measurable influence on the growth of fibroblasts. The action of heparin is not unique to this glycosaminoglycan, as several other highly sulfated polysaccharides, including dextran sulfate, pentosan polysulfate, and fucoidan, also exhibited the highly synergistic effect. Among other glycosaminoglycans examined, chondroitin sulfate B and heparan sulfate had a small, but significant, effect on enhancing the growth stimulatory action of PMGA. Chondroitin sulfate A, chondroitin sulfate C, hyaluronic acid dextran, and poly-L-glutamic acid, however, had no detectable effect. Further experiments suggested that the effect of heparin is twofold, namely, both a potentiation of growth stimulatory activity and a protection of PMGA activity. The data presented here suggest that the association of various cell surface components, such as PMGA and specific proteoglycans, can modulate the growth potential of a cell.
Insights
Highly sulfated polysaccharides, including heparin, significantly enhance plasma membrane-associated growth stimulatory activity (PMGA) in mouse fibroblasts. This synergistic effect potentiates and protects PMGA, suggesting cell surface component interactions modulate cell growth potential.
Area of Science:
- Cell Biology
- Biochemistry
- Molecular Biology
Background:
- Mouse liver plasma membranes contain growth stimulatory activity (PMGA).
- PMGA is mitogenic with platelet-poor plasma.
- The role of cell surface components in growth modulation is under investigation.
Purpose of the Study:
- To investigate the effect of heparin and other sulfated polysaccharides on PMGA activity.
- To elucidate the mechanism by which heparin enhances PMGA.
- To understand the interaction between PMGA and cell surface proteoglycans.
Main Methods:
- Preparation of mouse liver plasma membranes.
- Culturing mouse fibroblasts.
- Assays for DNA synthesis and cell proliferation.
- Testing various sulfated polysaccharides and glycosaminoglycans.
Main Results:
- Heparin dramatically enhanced PMGA's growth stimulatory action, with half-maximal effect at 1-3 µg/ml.
- Highly sulfated polysaccharides (dextran sulfate, pentosan polysulfate, fucoidan) showed synergistic effects.
- Chondroitin sulfate B and heparan sulfate had minor enhancing effects, while others did not.
- Heparin potentiated and protected PMGA activity.
Conclusions:
- Specific sulfated polysaccharides, notably heparin, significantly enhance PMGA activity.
- Heparin's effect involves both potentiation and protection of PMGA.
- Interactions between cell surface components like PMGA and proteoglycans are critical for modulating cellular growth potential.