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Updated: May 3, 2026

Stimulation of Notch Signaling in Mouse Osteoclast Precursors
Published on: February 28, 2017
Noncanonical activation of Notch1 protein by membrane type 1 matrix metalloproteinase (MT1-MMP) controls melanoma
Jun Ma1, Xiaoying Tang, Poki Wong
1From the Department of Biochemistry, Case Western Reserve University School of Medicine, Cleveland, Ohio 44106 and.
Abstract:
Notch1 is an evolutionarily conserved signaling molecule required for stem cell maintenance that is inappropriately reactivated in several cancers. We have previously shown that melanomas reactivate Notch1 and require its function for growth and survival. However, no Notch1-activating mutations have been observed in melanoma, suggesting the involvement of other activating mechanisms. Notch1 activation requires two cleavage steps: first by a protease and then by γ-secretase, which releases the active intracellular domain (Notch1(NIC)). Interestingly, although ADAM10 and -17 are generally accepted as the proteases responsible of Notch1 cleavage, here we show that MT1-MMP, a membrane-tethered matrix metalloproteinase involved in the pathogenesis of a number of tumors, is a novel protease required for the cleavage of Notch1 in melanoma cells. We find that active Notch1 and MT1-MMP expression correlate significantly in over 70% of melanoma tumors and 80% of melanoma cell lines, whereas such correlation does not exist between Notch1(NIC) and ADAM10 or -17. Modulation of MT1-MMP expression in melanoma cells affects Notch1 cleavage, whereas MT1-MMP expression in ADAM10/17 double knock-out fibroblasts restores the processing of Notch1, indicating that MT1-MMP is sufficient to promote Notch1 activation independently of the canonical proteases. Importantly, we find that MT1-MMP interacts with Notch1 at the cell membrane, supporting a potential direct cleavage mechanism of MT1-MMP on Notch1, and that MT1-MMP-dependent activation of Notch1 sustains melanoma cell growth. Together, the data highlight a novel mechanism of activation of Notch1 in melanoma cells and identify Notch1 as a new MT1-MMP substrate that plays important biological roles in melanoma.
Insights
Melanoma cells activate Notch1 signaling through MT1-MMP, a novel protease, not ADAM proteases. This MT1-MMP dependent Notch1 activation is crucial for melanoma growth and survival.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Notch1 signaling is vital for stem cell maintenance and is reactivated in various cancers, including melanoma.
- While Notch1 function is essential for melanoma growth, activating mutations are absent, suggesting alternative activation pathways.
- Canonical Notch1 cleavage involves ADAM10/17 proteases, but their role in melanoma Notch1 activation remains unclear.
Purpose of the Study:
- To investigate novel mechanisms of Notch1 activation in melanoma.
- To identify the specific proteases responsible for Notch1 cleavage in melanoma cells.
- To determine the functional significance of MT1-MMP in Notch1 activation and melanoma progression.
Main Methods:
- Analysis of Notch1 and protease expression correlation in melanoma tumors and cell lines.
- Functional studies involving modulation of MT1-MMP expression in melanoma cells and knockout fibroblasts.
- Investigation of MT1-MMP and Notch1 interaction at the cell membrane.
- Assessment of MT1-MMP's role in Notch1 cleavage and melanoma cell growth.
Main Results:
- MT1-MMP, a matrix metalloproteinase, was identified as a novel protease for Notch1 cleavage in melanoma.
- Significant correlation between active Notch1 and MT1-MMP expression was observed in melanoma tumors and cell lines.
- MT1-MMP demonstrated sufficiency in promoting Notch1 activation independently of ADAM10/17.
- MT1-MMP directly interacts with Notch1 at the cell membrane, facilitating its activation and sustaining melanoma cell growth.
Conclusions:
- MT1-MMP represents a novel mechanism for Notch1 activation in melanoma.
- Notch1 is a new substrate for MT1-MMP, playing critical roles in melanoma pathogenesis.
- Targeting the MT1-MMP/Notch1 axis may offer therapeutic strategies for melanoma.
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