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Stroma-derived matrix metalloproteinase (MMP)-2 promotes membrane type 1-MMP-dependent tumor growth in mice
Kaori Taniwaki1, Hiroshi Fukamachi, Kiyoshi Komori
1Division of Cancer Cell Research, Institute of Medical Science, University of Tokyo, Tokyo, Japan.
Abstract:
Matrix metalloproteinase-2 (MMP-2) is a stroma-derived MMP belonging to the type IV collagenase family. It is believed to mediate tumor cell behavior by degrading deposits of type IV collagen, a major component of the basement membrane. The membrane type 1-MMP (MT1-MMP) is a highly potent activator of MMP-2 and is expressed in many tumor and stromal cells. However, the roles played by stromal MMP-2 in tumor progression in vivo remain poorly understood. We established a colon epithelial cell line from an Mt1-mmp(-/-) mouse strain and transfected these cells with an inducible expression system for MT1-MMP (MT1rev cells). Following s.c. implantation into Mmp-2(+/+) mice and induction of MT1-MMP expression, MT1rev cells grew rapidly, whereas they grew very slowly in Mmp-2(-/-) mice, even in the presence of MT1-MMP. This MT1-MMP-dependent tumor growth of MT1rev cells was enhanced in Mmp-2(-/-) mice as long as MMP-2 was supplied via transfection or coimplantation of MMP-2-positive fibroblasts. MT1rev cells cultured in vitro in a three-dimensional collagen gel matrix also required the MT1-MMP/MMP-2 axis for rapid proliferation. MT1rev cells deposit type IV collagen primarily at the cell-collagen interface, and these deposits seem scarce at sites of invasion and proliferation. These data suggest that cooperation between stroma-derived MMP-2 and tumor-derived MT1-MMP may play a role in tumor invasion and proliferation via remodeling of the tumor-associated basement membrane. To our knowledge, this is the first study demonstrating that MT1-MMP-dependent tumor growth in vivo requires stromal-derived MMP-2. It also suggests that MMP-2 represents a potential target for tumor therapeutics.
Insights
Stromal matrix metalloproteinase-2 (MMP-2) is crucial for tumor growth, working with tumor-expressed MT1-MMP to degrade basement membranes. Targeting MMP-2 could be a new cancer therapy strategy.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Matrix metalloproteinase-2 (MMP-2) degrades type IV collagen, a basement membrane component, influencing tumor cell behavior.
- Membrane type 1-MMP (MT1-MMP) activates MMP-2 and is found in tumor and stromal cells.
- The specific role of stromal MMP-2 in tumor progression in vivo is not well understood.
Purpose of the Study:
- To investigate the role of stromal-derived MMP-2 in MT1-MMP-dependent tumor growth in vivo.
- To elucidate the mechanism by which MMP-2 and MT1-MMP cooperate in tumor progression.
Main Methods:
- Established a colon epithelial cell line with inducible MT1-MMP expression (MT1rev cells) from Mt1-mmp(-/-) mice.
- Implanted MT1rev cells into Mmp-2(+/+) and Mmp-2(-/-) mice.
- Assessed tumor growth with and without MT1-MMP induction and MMP-2 supplementation (transfection or co-implantation).
- Cultured cells in 3D collagen gels to study proliferation in vitro.
Main Results:
- MT1rev cells exhibited rapid growth in Mmp-2(+/+) mice but very slow growth in Mmp-2(-/-) mice, even with MT1-MMP induction.
- Tumor growth in Mmp-2(-/-) mice was restored by supplying exogenous MMP-2.
- In vitro studies confirmed the requirement of the MT1-MMP/MMP-2 axis for rapid proliferation in 3D collagen gels.
- MT1rev cells deposited type IV collagen at the cell-collagen interface, with reduced deposits at invasion sites.
Conclusions:
- Stromal MMP-2 is essential for MT1-MMP-dependent tumor growth in vivo.
- The MT1-MMP/MMP-2 axis, involving tumor-derived MT1-MMP and stroma-derived MMP-2, plays a critical role in tumor invasion and proliferation.
- MMP-2 is a potential therapeutic target for cancer treatment.
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