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Membrane-type matrix metalloproteases as diverse effectors of cancer progression
S Pauliina Turunen1, Olga Tatti-Bugaeva2, Kaisa Lehti3
1Department of Microbiology, Tumor and Cell Biology, Karolinska Institute, Nobels väg 16, SE-17177 Stockholm, Sweden.
Abstract:
Membrane-type matrix metalloproteases (MT-MMP) are pivotal regulators of cell invasion, growth and survival. Tethered to the cell membranes by a transmembrane domain or GPI-anchor, the six MT-MMPs can exert these functions via cell surface-associated extracellular matrix degradation or proteolytic protein processing, including shedding or release of signaling receptors, adhesion molecules, growth factors and other pericellular proteins. By interactions with signaling scaffold or cytoskeleton, the C-terminal cytoplasmic tail of the transmembrane MT-MMPs further extends their functionality to signaling or structural relay. MT-MMPs are differentially expressed in cancer. The most extensively studied MMP14/MT1-MMP is induced in various cancers along malignant transformation via pathways activated by mutations in tumor suppressors or proto-oncogenes and changes in tumor microenvironment including cellular heterogeneity, extracellular matrix composition, tissue oxygenation, and inflammation. Classically such induction involves transcriptional programs related to epithelial-to-mesenchymal transition. Besides inhibition by endogenous tissue inhibitors, MT-MMP activities are spatially and timely regulated at multiple levels by microtubular vesicular trafficking, dimerization/oligomerization, other interactions and localization in the actin-based invadosomes, in both tumor and the stroma. The functions of MT-MMPs are multifaceted within reciprocal cellular responses in the evolving tumor microenvironment, which poses the importance of these proteases beyond the central function as matrix scissors, and necessitates us to rethink MT-MMPs as dynamic signaling proteases of cancer. This article is part of a Special Issue entitled: Matrix Metalloproteinases edited by Rafael Fridman.
Insights
Membrane-type matrix metalloproteases (MT-MMPs) regulate cancer cell invasion and survival. These proteases function as dynamic signaling molecules in the tumor microenvironment, extending beyond matrix degradation.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Membrane-type matrix metalloproteases (MT-MMPs) are cell-surface enzymes critical for cell invasion, growth, and survival.
- They function through extracellular matrix degradation and shedding of signaling molecules, with transmembrane variants also engaging in intracellular signaling.
- MT-MMPs, particularly MMP14/MT1-MMP, are upregulated in various cancers, influenced by genetic mutations and the tumor microenvironment.
Purpose of the Study:
- To highlight the multifaceted roles of MT-MMPs in cancer.
- To emphasize their function as dynamic signaling proteases rather than solely matrix degraders.
- To discuss the regulation and significance of MT-MMPs in the tumor microenvironment.
Main Methods:
- Literature review and synthesis of existing research on MT-MMP functions and regulation.
- Analysis of MT-MMP involvement in cancer progression and signaling pathways.
- Discussion of regulatory mechanisms including trafficking, dimerization, and localization.
Main Results:
- MT-MMPs are involved in matrix degradation, protein processing, and signal transduction.
- Their expression and activity are tightly regulated at multiple levels.
- MT-MMPs play crucial roles in tumor initiation, progression, and interaction with the tumor microenvironment.
Conclusions:
- MT-MMPs are key regulators of cancer progression, acting as dynamic signaling proteases.
- Their functions extend beyond matrix degradation to encompass complex cellular signaling and structural roles.
- Understanding MT-MMPs is crucial for developing novel cancer therapies.
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