Regulation of MT1-MMP Activity through Its Association with ERMs
Henar Suárez1,2, Soraya López-Martín2, Victor Toribio1,2
1Molecular Biology Department, Universidad Autónoma de Madrid (UAM), 28049 Madrid, Spain.
Abstract:
Membrane-bound proteases play a key role in biology by degrading matrix proteins or shedding adhesion receptors. MT1-MMP metalloproteinase is critical during cancer invasion, angiogenesis, and development. MT1-MMP activity is strictly regulated by internalization, recycling, autoprocessing but also through its incorporation into tetraspanin-enriched microdomains (TEMs), into invadopodia, or by its secretion on extracellular vesicles (EVs). We identified a juxtamembrane positively charged cluster responsible for the interaction of MT1-MMP with ERM (ezrin/radixin/moesin) cytoskeletal connectors in breast carcinoma cells. Linkage to ERMs regulates MT1-MMP subcellular distribution and internalization, but not its incorporation into extracellular vesicles. MT1-MMP association to ERMs and insertion into TEMs are independent phenomena, so that mutation of the ERM-binding motif in the cytoplasmic region of MT1-MMP does not preclude its association with the tetraspanin CD151, but impairs the accumulation and coalescence of CD151/MT1-MMP complexes at actin-rich structures. Conversely, gene deletion of CD151 does not impact on MT1-MMP colocalization with ERM molecules. At the plasma membrane MT1-MMP autoprocessing is severely dependent on ERM association and seems to be the dominant regulator of the enzyme collagenolytic activity. This newly characterized MT1-MMP/ERM association can thus be of relevance for tumor cell invasion.
Insights
Membrane protein MT1-MMP interacts with ERM proteins, regulating its distribution and collagenolytic activity, which is crucial for cancer cell invasion. This MT1-MMP/ERM association is key for tumor progression.
Area of Science:
- Cell Biology
- Biochemistry
- Cancer Research
Background:
- Membrane-bound proteases like MT1-MMP are vital for matrix degradation and receptor shedding.
- MT1-MMP's function is regulated by its localization, including tetraspanin-enriched microdomains (TEMs) and extracellular vesicles (EVs).
Purpose of the Study:
- To investigate the interaction between MT1-MMP and ERM proteins in breast carcinoma cells.
- To determine how ERM linkage affects MT1-MMP's subcellular distribution, TEM incorporation, and enzymatic activity.
Main Methods:
- Identification of an ERM-binding motif in MT1-MMP.
- Mutation analysis of the ERM-binding motif.
- Gene deletion of CD151.
- Analysis of MT1-MMP subcellular localization and autoprocessing.
Main Results:
- A juxtamembrane positively charged cluster mediates MT1-MMP interaction with ERM proteins.
- ERM linkage regulates MT1-MMP subcellular distribution and internalization but not EV secretion.
- MT1-MMP autoprocessing and collagenolytic activity at the plasma membrane are dependent on ERM association.
Conclusions:
- The MT1-MMP/ERM association is independent of TEM incorporation.
- ERM linkage is a dominant regulator of MT1-MMP's collagenolytic activity.
- This interaction is potentially significant for understanding and targeting tumor cell invasion.
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