4.7 Article

Collagen Type XI Inhibits Lung Cancer-Associated Fibroblast Functions and Restrains the Integrin Binding Site Availability on Collagen Type I Matrix

Journal

Publisher

MDPI
DOI: 10.3390/ijms231911722

Keywords

cancer-associated fibroblast; non-small cell lung cancer; integrin; collagen

Funding

  1. Canadian Institute of Health Research Foundation [FDN-148395]
  2. Ontario Ministry of Health and Long-Term Care
  3. M. Qasim Choksi chair in Lung Cancer Translational research

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Collagen type XI restrains collagen remodeling and cell migration mediated by cancer-associated fibroblasts (CAF), thereby limiting the invasion of lung cancer cells.
The tumor microenvironment, including cancer-associated fibroblast (CAF), plays an active role in non-small cell lung cancer (NSCLC) development and progression. We previously reported that collagen type XI and integrin alpha 11, a collagen receptor, were upregulated in NSCLC; the latter promotes tumor growth and metastasis. We here explored the role of collagen type XI in NSCLC stroma. We showed that the presence of collagen type XI in collagen type I matrices inhibits CAF-mediated collagen remodeling and cell migration. This resulted in the inhibition of CAF-dependent lung-tumor cell invasion. Among the collagen receptors expressed on CAF, we determined that DDR2 and integrin alpha 2 beta 1, but not integrin alpha 11 beta 1, mediated the high-affinity binding to collagen type XI. We further demonstrated that collagen type XI restrained the integrin binding site availability on collagen type I matrices, thus limiting cell interaction with collagen type I. As a consequence, CAFs failed to activate FAK, p38 and Akt one hour after they interacted with collagen type I/XI. We concluded that collagen type XI may have a competitive negative feedback role on the binding of collagen type I to its receptors.

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