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Regulation of membrane-type-1 matrix metalloproteinase activity by its cytoplasmic domain
K Lehti1, H Valtanen, S A Wickström
1Departments of Virology and Pathology, Haartman Institute, University of Helsinki, FIN-00014 Helsinki, Finland.
Abstract:
Membrane-type-1 matrix metalloproteinase (MT1-MMP) has transmembrane and cytoplasmic domains, which target it to invasive fronts. We analyzed the role of the cytoplasmic tail by expressing wild type MT1-MMP and three mutants with progressively truncated C termini in human Bowes melanoma cells. We examined gelatinase A activation and the localization and processing of recombinant proteins in stable cell clones using gelatin zymography, immunoblotting, and immunofluorescence. Cell invasion was analyzed in vitro by Matrigel invasion assays. Gelatinase A was activated in all cell clones. However, the localization of MT1-MMP to the leading edge of migrating cells and cell invasion through Matrigel were strongly enhanced only in cells expressing either wild type or truncated MT1-MMP lacking 6 C-terminal amino acid residues (Delta577). Truncations of 10 or 16 amino acid residues in the cytoplasmic domain (Delta567 and Delta573, respectively) disturbed MT1-MMP localization. The expression of wild type and Delta577 MT1-MMPs induced also their cleavage to 43-kDa cell surface forms and the release of soluble, approximately 20-kDa N-terminal fragments containing the catalytic center. A synthetic MMP inhibitor but not a gelatinase inhibitor prevented the processing, suggesting that autocatalytic cleavage occurs. Purified soluble MT1-MMP was also autoproteolytically processed to 43- and 20-kDa forms in vitro. Our results indicate that the cytoplasmic domain has an important role in cell invasion by controlling both the targeting and degradation/turnover of MT1-MMP.
Insights
The cytoplasmic tail of membrane-type-1 matrix metalloproteinase (MT1-MMP) is crucial for its localization and function. Truncating this tail enhances cell invasion by controlling MT1-MMP targeting and turnover.
Area of Science:
- Biochemistry
- Cell Biology
- Molecular Biology
Background:
- Membrane-type-1 matrix metalloproteinase (MT1-MMP) is a key enzyme involved in extracellular matrix degradation and cell invasion.
- Its transmembrane and cytoplasmic domains are implicated in targeting MT1-MMP to invasive fronts.
Purpose of the Study:
- To investigate the role of the cytoplasmic tail of MT1-MMP in regulating its localization, processing, and function in cell invasion.
- To determine how truncations in the C-terminal cytoplasmic domain affect MT1-MMP activity and cell migration.
Main Methods:
- Stable expression of wild-type and truncated MT1-MMP mutants in human Bowes melanoma cells.
- Analysis of gelatinase A activation, protein localization, and processing using gelatin zymography, immunoblotting, and immunofluorescence.
- In vitro Matrigel invasion assays to assess cell invasiveness.
Main Results:
- Gelatinase A activation occurred in all cell clones.
- MT1-MMP localization to the leading edge and cell invasion were enhanced in cells expressing wild-type or MT1-MMP lacking 6 C-terminal residues (Delta577).
- Truncations of 10 or 16 residues (Delta567, Delta573) disrupted MT1-MMP localization, and wild-type/Delta577 MT1-MMPs underwent autocatalytic cleavage.
Conclusions:
- The cytoplasmic domain of MT1-MMP plays a critical role in controlling its cell surface targeting and degradation/turnover.
- Specific C-terminal residues are essential for proper MT1-MMP localization and efficient cell invasion.
- MT1-MMP processing appears to be an autocatalytic event regulated by its cytoplasmic domain.