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Updated: May 26, 2026

Measuring Global Cellular Matrix Metalloproteinase and Metabolic Activity in 3D Hydrogels
Published on: January 22, 2019
Membrane-type-3 matrix metalloproteinase (MT3-MMP) functions as a matrix composition-dependent effector of melanoma
Olga Tatti1, Mariliina Arjama, Annamari Ranki
1Research Programs Unit, Molecular Cancer Biology, University of Helsinki, Helsinki, Finland.
Abstract:
In primary human melanoma, the membrane-type matrix metalloproteinase, MT3-MMP, is overexpressed in the most aggressive nodular-type tumors. Unlike MT1-MMP and MT2-MMP, which promote cell invasion through basement membranes and collagen type I-rich tissues, the function of MT3-MMP in tumor progression remains unclear. Here, we demonstrate that MT3-MMP inhibits MT1-MMP-driven melanoma cell invasion in three-dimensional collagen, while yielding an altered, yet MT1-MMP-dependent, form of expansive growth behavior that phenocopies the formation of nodular cell colonies. In melanoma cell lines originating from advanced primary or metastatic lesions, endogenous MT3-MMP expression was associated with limited collagen-invasive potential. In the cell lines with highest MT3-MMP expression relative to MT1-MMP, collagen-invasive activity was increased following stable MT3-MMP gene silencing. Consistently, MT3-MMP overexpression in cells derived from less advanced superficially spreading melanoma lesions, or in the MT3-MMP knockdown cells, reduced MT1-MMP-dependent collagen invasion. Rather than altering MT1-MMP transcription, MT3-MMP interacted with MT1-MMP in membrane complexes and reduced its cell surface expression. By contrast, as a potent fibrinolytic enzyme, MT3-MMP induced efficient invasion of the cells in fibrin, a provisional matrix component frequently found at tumor-host tissue interfaces and perivascular spaces of melanoma. Since MT3-MMP was significantly upregulated in biopsies of human melanoma metastases, these results identify MT3-MMP as a matrix-dependent modifier of the invasive tumor cell functions during melanoma progression.
Insights
Matrix metalloproteinase 3 (MT3-MMP) impacts melanoma invasion differently depending on the tissue. It inhibits collagen invasion but promotes fibrin invasion, affecting tumor progression.
Area of Science:
- Oncology
- Biochemistry
- Cell Biology
Background:
- Melanoma progression involves complex matrix remodeling.
- Matrix metalloproteinases (MMPs) play crucial roles in cancer invasion.
- The specific role of membrane-type 3 matrix metalloproteinase (MT3-MMP) in melanoma progression was unclear.
Purpose of the Study:
- To elucidate the function of MT3-MMP in melanoma cell invasion and tumor progression.
- To investigate the relationship between MT3-MMP and MT1-MMP in melanoma.
- To determine the matrix-specific invasive capabilities of MT3-MMP.
Main Methods:
- Analysis of MT3-MMP expression in human melanoma tissues.
- In vitro studies using melanoma cell lines with varying MT3-MMP expression.
- Gene silencing and overexpression of MT3-MMP.
- Assessment of cell invasion in 3D collagen and fibrin matrices.
- Investigation of MT1-MMP expression and localization.
Main Results:
- MT3-MMP inhibited MT1-MMP-driven invasion in collagen but promoted expansive growth.
- Melanoma cells with high MT3-MMP expression showed limited collagen invasion.
- MT3-MMP gene silencing increased collagen invasion, while overexpression reduced it.
- MT3-MMP reduced MT1-MMP cell surface expression by interacting in membrane complexes.
- MT3-MMP facilitated efficient melanoma cell invasion in fibrin matrices.
- MT3-MMP was upregulated in human melanoma metastases.
Conclusions:
- MT3-MMP acts as a matrix-dependent regulator of melanoma cell invasion.
- It modulates MT1-MMP activity and promotes invasion in specific matrix environments like fibrin.
- MT3-MMP's dual role in invasion suggests it is a significant factor in melanoma progression and metastasis.
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