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Binding and activation of plasminogen on the surface of osteosarcoma cells
P G Campbell1, K Wines, T B Yanosick
1Orthopaedic Research Laboratory, Allegheny-Singer Research Institute, Pittsburgh, Pennsylvania 15212.
Abstract:
Plasmin (Pm) is a broad action serine protease implicated in numerous physiological functions. In bone, Pm may play a role in growth, resorption, metastasis, and the activation of growth factors. The various components of the Pm system are known to bind and function on the cell surface of various cell types, but no pertinent data are available describing membrane-bound Pm or its zymogen, plasminogen (Pg), in either normal or neoplastic bone cells. We report here that Pg binds to the surface of the human osteosarcoma cell line MG-63 and is activated to Pm by endogenous urokinase plasminogen activator (uPA). These conclusions are based on experiments utilizing radiolabeled compounds and a cell surface proteolytic assay measuring amidolytic activity of Pm. 125I-Pg binding to cells was time dependent, saturable, reversible, and specific. Binding was characterized by a relatively low affinity (Kd approximately 0.9 microM) and a high capacity (approximately 7.5 x 10(6) sites/cell). The binding of 125I-Pg was associated with lysine binding sites of the plasminogen molecule. Activation of 125I-Pg to 125I-Pm occurred on the cell surface and was dependent upon cell bound uPA, as determined by inhibitory antibodies. Binding of Pg to MG-63 monolayers represented approximately 80% bound specifically to the cell surface and the remainder to the surrounding extra-cellular matrix. Either co-incubation with uPA or pre-incubation with Pm resulted in increased 125I-Pg binding to osteosarcoma cells. Cell surface Pm proteolytic activity was confirmed by an amidolytic chromogenic assay. Both Pm and Pg bound to cells with Pg being activated by endogenous uPA. Plasmin activated on the cell surface was partially protected from inhibition by alpha 2-antiPm (requiring Pm lysine binding site interaction) but inhibited by aprotinin, (interacting directly with the Pm catalytic site). Resistance of cell bound Pm to alpha 2-antiPm inhibition suggests that cell surface proteolysis can occur in the presence of a soluble Pm inhibitor known to exist in the extracellular space. Based on these results, we speculate that the various bone physiological processes implicating Pm may occur at or near the bone cell surface.
Insights
This study shows plasminogen (Pg) binds to osteosarcoma cells and is activated to plasmin (Pm) by urokinase plasminogen activator (uPA). Cell-surface plasmin activity suggests localized bone remodeling and metastasis processes.
Area of Science:
- Biochemistry
- Cell Biology
- Oncology
Background:
- Plasmin (Pm) is a serine protease involved in bone remodeling, growth, and metastasis.
- The cell surface interactions of plasminogen (Pg) and plasmin (Pm) in bone cells are not well understood.
- Osteosarcoma cells, a type of bone cancer, present a model to study these interactions.
Purpose of the Study:
- To investigate the binding and activation of plasminogen (Pg) on the surface of human osteosarcoma cells (MG-63).
- To determine the role of endogenous urokinase plasminogen activator (uPA) in this process.
- To characterize the functional consequences of cell-surface plasmin activity.
Main Methods:
- Utilized radiolabeled 125I-Pg to quantify binding to MG-63 cells.
- Employed cell surface proteolytic assays to measure amidolytic activity.
- Used inhibitory antibodies against uPA to confirm its role in activation.
- Investigated plasmin inhibition using alpha 2-antiplasmin and aprotinin.
Main Results:
- 125I-Pg specifically binds to MG-63 cells in a time-dependent, saturable, and reversible manner.
- Binding affinity was low (Kd ~0.9 microM) with high capacity (~7.5 x 10^6 sites/cell), involving lysine binding sites.
- Endogenous uPA on the cell surface activated bound Pg to Pm.
- Cell-surface plasmin exhibited proteolytic activity and was partially resistant to alpha 2-antiplasmin inhibition.
Conclusions:
- Osteosarcoma cells possess surface receptors for plasminogen (Pg).
- Endogenous urokinase plasminogen activator (uPA) activates cell-bound Pg to plasmin (Pm).
- Cell-surface plasmin activity may play a role in bone resorption, metastasis, and growth factor activation at the bone cell surface.