Transglutaminase stabilizes melanoma adhesion under laminar flow

D. G. Menter, J. T. Patton, T. V. Updyke, R. S. Kerbel, M. Maamer, L. V. Mcintire, G. L. Nicolson

Research output: Contribution to journalArticlepeer-review

36 Scopus citations

Abstract

To resist substantial wall shear stress (WSS) exerted by flowing blood, metastatic melanoma cells can form adhesive contacts with subendothelial extracellular matrix proteins, such as fibronectin (FN). Such contacts may be stabilized by transglutaminase catalyzed-crosslinkage of cell focal adhesion proteins. We analyzed human melanoma cell adhesion under flow by decreasing the flow (WSS) of melanoma cell suspensions and allowing them to adhere to immobilized wheat germ agglutinin or FN. At the wall shear adhesion threshold (WSAT), cell adherence was rapid with no rolling. Following cell adherence, we increased the flow and determined the wall shear detachment threshold (WSDeT). Cells spread and remained adherent on immobilized FN at high WSDeTs (≥ 32.5 dynes/cm2). The high resistance of adherent cells to shear forces suggested that transglutaminase-mediated crosslinking might be involved. Transglutaminase inhibitors monodansylcadaverine and INO-3178 decreased WSAT, and at low concentrations completely inhibited tumor cell spreading and promoted detachment at low WSDeTs (0.67 dynes/cm2). In static adhesion assays, transglutaminase inhibitors decreased cell adhesion to immobilized-FN in a dose-dependent manner and prevented the formation of crosslinked125I-FN complex that failed to enter a SDS-polyacrylamide gradient gel. The data suggest that transglutaminase-catalyzed crosslinking, particularly in the presence of WSS, may be important in stabilizing cellular adhesive contacts during adhesion to immobilized-FN.

Original languageEnglish (US)
Pages (from-to)123-143
Number of pages21
JournalCell Biophysics
Volume18
Issue number2
DOIs
StatePublished - Apr 1991

Keywords

  • Parallel plate flow chamber
  • cell adhesion threshold
  • cell detachment threshold
  • cell spreading
  • detergent-insoluble protein complex
  • fibronectin
  • integrin
  • melanoma
  • transglutaminase
  • tumor cell adhesion
  • wall shear stress
  • wheat germ agglutinin

ASJC Scopus subject areas

  • Biophysics
  • Cell Biology

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