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

Biochemistry
|September 15, 2004
PubMed

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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