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Cell-surface-associated tissue transglutaminase is a target of MMP-2 proteolysis
Alexey M Belkin1, Evgeny A Zemskov, Jun Hang
1Department of Biochemistry, The Holland Laboratory, American Red Cross, Rockville, Maryland 20855, USA. belkina@usa.redcross.org
Abstract:
MT1-MMP, a prototypic member of a membrane-type metalloproteinase subfamily, is an invasion promoting protease and an activator of MMP-2. In addition, MT1-MMP proteolysis regulates the functionality of cell-surface adhesion/signaling receptors including tissue transglutaminase (tTG). tTG is known to serve as an adhesion coreceptor for beta1/beta3 integrins and as an enzyme that catalyzes the cross-linking of proteins and the conjugation of polyamines to proteins. Here, we report that MMP-2, functioning in concert with MT1-MMP, hydrolyzes cell-surface-associated tTG, thereby further promoting the effect initiated by the activator of MMP-2. tTG, in return, preferentially associates with the activation intermediate of MMP-2. This event decreases the rate of MMP-2 maturation and protects tTG against proteolysis by MMP-2. Our cell culture, in vitro experiments, and in silico modeling indicate that the catalytic domain of MMP-2 directly associates with the core enzymatic domain II of tTG (the K(d) = 380 nM). The follow-up cleavage of the domain II eliminates both the receptor and the enzymatic activity of tTG. Our data illuminate the coordinated interplay involving the MT1-MMP/MMP-2 protease tandem in the regulation of the cell receptors and explain the underlying biochemical mechanisms of the extensive tTG proteolysis that exists at the normal tissue/tumor boundary. Our findings also suggest that neoplasms, which express functionally active MT1-MMP and, therefore, activate soluble MMP-2, can contribute to the degradation of tTG expressed in neighboring host cells. The loss of adhesive and enzymatic activities of tTG at the interface between tumor and normal tissue will decrease cell-matrix interactions and inhibit matrix cross-linking, causing multiple pathological alterations in host cell adhesion and locomotion.
Insights
Matrix metalloproteinase-2 (MMP-2) and MT1-MMP work together to break down tissue transglutaminase (tTG). This coordinated action impacts cell adhesion and migration at tumor boundaries, affecting tissue integrity.
Area of Science:
- Biochemistry
- Cell Biology
- Oncology
Background:
- Membrane-type 1 matrix metalloproteinase (MT1-MMP) is a protease that promotes invasion and activates MMP-2.
- MT1-MMP proteolysis regulates cell-surface receptors, including tissue transglutaminase (tTG).
- tTG functions as an adhesion coreceptor and catalyzes protein cross-linking and polyamine conjugation.
Purpose of the Study:
- To investigate the coordinated interplay between MT1-MMP, MMP-2, and tTG.
- To elucidate the biochemical mechanisms underlying tTG proteolysis at the tumor-normal tissue boundary.
- To understand how this interaction influences cell adhesion and migration.
Main Methods:
- Cell culture experiments
- In vitro biochemical assays
- In silico molecular modeling
Main Results:
- MMP-2, activated by MT1-MMP, hydrolyzes cell-surface tTG, enhancing invasive effects.
- tTG associates with MMP-2 intermediates, reducing MMP-2 maturation and protecting tTG from proteolysis.
- MMP-2's catalytic domain binds to tTG's domain II, leading to cleavage and loss of tTG's receptor and enzymatic functions.
Conclusions:
- The MT1-MMP/MMP-2 protease tandem plays a crucial role in regulating cell receptors and tTG activity.
- Extensive tTG proteolysis at the tumor-normal tissue interface is explained by this coordinated protease action.
- Tumor-associated MT1-MMP and activated MMP-2 can degrade tTG in host cells, altering cell-matrix interactions and promoting pathological changes.
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