Integrin-mediated traction force enhances paxillin molecular associations and adhesion dynamics that increase the invasiveness of tumor cells into a three-dimensional extracellular matrix

Author:

Mekhdjian Armen H.1,Kai FuiBoon2,Rubashkin Matthew G.2,Prahl Louis S.3,Przybyla Laralynne M.2,McGregor Alexandra L.4,Bell Emily S.4,Barnes J. Matthew2,DuFort Christopher C.2,Ou Guanqing2,Chang Alice C.1,Cassereau Luke2,Tan Steven J.1,Pickup Michael W.2,Lakins Jonathan N.2,Ye Xin5,Davidson Michael W.6,Lammerding Jan4,Odde David J.3,Dunn Alexander R.1,Weaver Valerie M.27

Affiliation:

1. Department of Chemical Engineering, Stanford University, Stanford, CA 94305

2. Center for Bioengineering and Tissue Regeneration, Department of Surgery, University of California, San Francisco, San Francisco, CA 94143

3. Department of Biomedical Engineering, University of Minnesota, Minneapolis, MN 55455

4. Nancy E. and Peter C. Meinig School of Biomedical Engineering and Weill Institute for Cell and Molecular Biology, Cornell University, Ithaca, NY 14853

5. Whitehead Institute for Biomedical Research, Cambridge, MA 02142

6. National High Magnetic Field Laboratory and Department of Biological Science, Florida State University, Tallahassee, FL 32306

7. Departments of Anatomy, Bioengineering and Therapeutic Sciences, and Radiation Oncology, Eli and Edythe Broad Center of Regeneration Medicine and Stem Cell Research, and UCSF Helen Diller Comprehensive Cancer Center, University of California, San Francisco, San Francisco, CA 94143

Abstract

Metastasis requires tumor cells to navigate through a stiff stroma and squeeze through confined microenvironments. Whether tumors exploit unique biophysical properties to metastasize remains unclear. Data show that invading mammary tumor cells, when cultured in a stiffened three-dimensional extracellular matrix that recapitulates the primary tumor stroma, adopt a basal-like phenotype. Metastatic tumor cells and basal-like tumor cells exert higher integrin-mediated traction forces at the bulk and molecular levels, consistent with a motor-clutch model in which motors and clutches are both increased. Basal-like nonmalignant mammary epithelial cells also display an altered integrin adhesion molecular organization at the nanoscale and recruit a suite of paxillin-associated proteins implicated in invasion and metastasis. Phosphorylation of paxillin by Src family kinases, which regulates adhesion turnover, is similarly enhanced in the metastatic and basal-like tumor cells, fostered by a stiff matrix, and critical for tumor cell invasion in our assays. Bioinformatics reveals an unappreciated relationship between Src kinases, paxillin, and survival of breast cancer patients. Thus adoption of the basal-like adhesion phenotype may favor the recruitment of molecules that facilitate tumor metastasis to integrin-based adhesions. Analysis of the physical properties of tumor cells and integrin adhesion composition in biopsies may be predictive of patient outcome.

Publisher

American Society for Cell Biology (ASCB)

Subject

Cell Biology,Molecular Biology

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