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Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
Deletion of ADAM-9 in HGF/CDK4 mice impairs melanoma development and metastasis
N Giebeler1, A Schönefuß1, J Landsberg2
1Department of Dermatology and Venerology, University of Cologne, Germany.
Abstract:
ADAM-9 is a metalloproteinase expressed in peritumoral areas by invading melanoma cells and by adjacent peritumoral stromal cells; however, its function in stromal and melanoma cells is not fully understood. To address this question in vivo in a spontaneous melanoma model, we deleted ADAM-9 in mice carrying the hepatocyte growth factor (Hgf) transgene and knock-in mutation Cdk4R24C/R24C, demonstrated to spontaneously develop melanoma. Spontaneous melanoma arose less frequently in ADAM-9-deleted mice than in controls. Similarly reduced tumor numbers (although with faster growth kinetics) were detected upon induction of melanoma with 7,12-dimethylbenz[a]anthracene (DMBA). However, more lesions were induced at early time points in the absence of ADAM-9. Increased initial and decreased late tumor numbers were paralleled by altered tumor cell proliferation, but not apoptosis or inflammation. Importantly, significantly reduced lung metastases were detected upon ADAM-9 deletion. Using in vitro assays to address this effect mechanistically, we detected reduced adhesion and transmigration of ADAM-9-silenced melanoma cells to/through the endothelium. This implies that ADAM-9 functionally and cell autonomously mediates extravasation of melanoma cells. In vitro and in vivo we demonstrated that the basement membrane (BM) component laminin β3-chain is a direct substrate of ADAM-9, thus contributing to destabilization and disruption of the BM barrier during invasion. In in vitro invasion assays using human melanoma cells and skin equivalents, depletion of ADAM-9 resulted in decreased invasion of the BM, which remained almost completely intact, as shown by continuous staining for laminin β3-chain. Importantly, supplying soluble ADAM-9 to the system reversed this effect. Taken together, our data show that melanoma derived ADAM-9 autonomously contributes to melanoma progression by modulating cell adhesion to the endothelium and altering BM integrity by proteolytically processing the laminin-β3 chain. This newly described process and ADAM-9 itself may represent potential targets for anti-tumor therapies.
Insights
ADAM-9 (a metalloproteinase) promotes melanoma progression by aiding cell invasion and metastasis. Deleting ADAM-9 reduced tumor formation and lung metastases, suggesting it's a potential anti-melanoma therapy target.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- ADAM-9 is a metalloproteinase found in melanoma peritumoral areas, but its precise role in melanoma progression is unclear.
- Understanding ADAM-9's function is crucial for developing targeted melanoma therapies.
Purpose of the Study:
- To investigate the in vivo role of ADAM-9 in melanoma development and metastasis.
- To elucidate the molecular mechanisms by which ADAM-9 influences melanoma cell behavior.
Main Methods:
- Utilized a spontaneous melanoma mouse model with ADAM-9 deletion.
- Employed 7,12-dimethylbenz[a]anthracene (DMBA) to induce melanoma in mice.
- Conducted in vitro assays using melanoma cells and human skin equivalents.
- Assessed tumor cell proliferation, apoptosis, inflammation, and lung metastasis.
- Analyzed basement membrane (BM) integrity and laminin β3-chain processing.
Main Results:
- ADAM-9 deletion reduced spontaneous and induced melanoma formation.
- ADAM-9 deficiency led to decreased lung metastasis and impaired melanoma cell extravasation.
- ADAM-9 was identified as a direct enzyme acting on laminin β3-chain, crucial for BM degradation.
- Melanoma cell invasion and BM disruption were significantly reduced in the absence of ADAM-9.
Conclusions:
- Melanoma-derived ADAM-9 autonomously drives tumor progression by enhancing cell adhesion and degrading the BM via laminin β3-chain processing.
- ADAM-9 and its associated pathway represent promising therapeutic targets for melanoma treatment.

