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Updated: Sep 16, 2026

Monitoring Functionality and Morphology of Vasculature Recruited by Factors Secreted by Fast-growing Tumor-generating Cells
Published on: November 23, 2014
Growth factors in the regulation of plasminogen-plasmin system in tumor cells
1Department of Virology, University of Helsinki, Finland.
Abstract:
Growth regulatory polypeptides, which act in an autocrine or paracrine fashion, are increasingly implicated in the control of pericellular proteolysis. Representatives of major growth factor families, like EGF, PDGF, IGF, FGF, IL, and TGF beta, and in addition, TNFs have effects both on cell proliferation and proteolytic events. Some of them participate in the control of proteolytic events by affecting pericellular PA activity. These factors regulate the synthesis, secretion, and activity of both PAs and their inhibitors in a cell and factor-specific manner. Interestingly, most of these affect simultaneously the secretion of both PAs and their inhibitors, sometimes concomitantly. In addition to PAs, growth factors modulate secretion of collagenases, transin, and stromelysin, and their respective inhibitors, TIMP. The balance of pericellular proteolytic activity is regulated according to the nature and interaction of various growth factors. Pericellular proteolysis can be modulated by growth factors at different levels. Several growth factors are able to regulate the amount and composition of the extracellular matrices. This, in turn, may affect the interactions of certain growth factors with the pericellular matrix structures. Altered structure of the matrix due to excessive proteolytic activity may thus limit the amount and activity of matrix-associated growth factors. Several growth factors exist in latent forms, and activation of these growth factors often requires proteolytic processing. A regulatory loop is thus formed where active growth factors affect the secretion of proteolytic enzymes and thus the concentrations of active ligands.(ABSTRACT TRUNCATED AT 250 WORDS)
Insights
Growth factors regulate pericellular proteolysis by influencing proteases and their inhibitors. This complex interplay impacts cell proliferation and extracellular matrix remodeling, forming a crucial regulatory loop.
Area of Science:
- Biochemistry
- Cell Biology
- Molecular Biology
Background:
- Growth regulatory polypeptides, including Epidermal Growth Factor (EGF) and Transforming Growth Factor beta (TGF-β), influence pericellular proteolysis.
- These factors affect both cell proliferation and proteolytic events, particularly plasminogen activator (PA) activity.
Purpose of the Study:
- To elucidate the role of growth factors in controlling pericellular proteolysis.
- To understand how growth factors modulate the synthesis, secretion, and activity of proteases and their inhibitors.
Main Methods:
- The study reviews the mechanisms by which various growth factors (e.g., EGF, PDGF, IGF, FGF, IL, TGF-β, TNF) impact proteolytic systems.
- Analysis of growth factor regulation on plasminogen activators (PAs), collagenases, transin, stromelysin, and their inhibitors (TIMP).
Main Results:
- Growth factors regulate the secretion of both proteases and their inhibitors, often simultaneously.
- They modulate extracellular matrix composition and structure, affecting growth factor availability and activation.
- A feedback loop exists where active growth factors influence protease secretion, further regulating ligand availability.
Conclusions:
- Growth factors play a critical role in balancing pericellular proteolytic activity.
- The interaction and nature of growth factors dictate the regulation of proteolysis.
- Understanding these mechanisms is key to comprehending cell growth and matrix dynamics.
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