Crosstalk between insulin-like growth factor (IGF) receptor and integrins through direct integrin binding to IGF1.

Cytokine Growth Factor Rev

Department of Clinical Immunology and Rheumatology, The Tazuke-Kofukai Medical Research Institute, Kitano Hospital, Osaka, Japan.

Published: April 2017

AI Article Synopsis

  • Integrins, known for their role in cell adhesion to the extracellular matrix (ECM), have been thought to act primarily alongside growth factors like IGF1, but new research reveals that IGF1 directly interacts with integrins on the cell surface.
  • This interaction leads to the formation of a complex involving IGF1, integrins, and the IGF1 receptor (IGF1R), allowing signaling to occur even without the presence of ECM.
  • The study suggests that existing models for IGF1 signaling should be revised to include the direct interaction between IGF1 and integrins, highlighting the potential of an integrin-binding defective mutant of IGF1 as a new therapeutic approach for inhibiting tumor growth.

Article Abstract

It has been generally accepted that integrin cell adhesion receptors are involved in growth factor signaling (integrin-growth factor crosstalk), since antagonists to integrins often suppress growth factor signaling. Partly because integrins have been originally identified as cell adhesion receptors to extracellular matrix (ECM) proteins, current models of the crosstalk between IGF1 and integrins propose that ECM ligands (e.g., vitronectin) bind to integrins and IGF1 binds to IGF receptor type 1 (IGF1R), and two separate signals merge inside the cells. Our research proves otherwise. We discovered that IGF1 interacts directly with integrins, and induces integrin-IGF-IGF1R complex formation on the cell surface. IGF1 signaling can be detected in the absence of ECM (anchorage-independent conditions). Integrin antagonists block both ECM-integrin interaction and IGF-integrin interaction, and do not distinguish the two. This is one possible reason why integrin-IGF1 interaction has not been detected. With these new discoveries, we believe that the direct IGF-integrin interaction should be incorporated into models of IGF1 signaling. The integrin-binding defective mutant of IGF1 is defective in inducing IGF signaling, although the mutant still binds to IGF1R. Notably, the IGF1 mutant is dominant-negative and suppresses cell proliferation induced by wt IGF1, and suppresses tumorigenesis in vivo, and thus the IGF1 mutant has potential as a therapeutic.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5401657PMC
http://dx.doi.org/10.1016/j.cytogfr.2017.01.003DOI Listing

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