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Unique ligand and kinase-independent roles of the insulin receptor in regulation of cell cycle, senescence and apoptosis

Author

Listed:
  • Hirofumi Nagao

    (Harvard Medical School)

  • Ashok Kumar Jayavelu

    (Max Planck Institute of Biochemistry
    German Cancer Research Center (DKFZ))

  • Weikang Cai

    (Harvard Medical School
    New York Institute of Technology College of Osteopathic Medicine)

  • Hui Pan

    (Harvard Medical School)

  • Jonathan M. Dreyfuss

    (Harvard Medical School)

  • Thiago M. Batista

    (Harvard Medical School)

  • Bruna B. Brandão

    (Harvard Medical School)

  • Matthias Mann

    (Max Planck Institute of Biochemistry)

  • C. Ronald Kahn

    (Harvard Medical School)

Abstract

Insulin acts through the insulin receptor (IR) tyrosine kinase to exert its classical metabolic and mitogenic actions. Here, using receptors with either short or long deletion of the β-subunit or mutation of the kinase active site (K1030R), we have uncovered a second, previously unrecognized IR signaling pathway that is intracellular domain-dependent, but ligand and tyrosine kinase-independent (LYK-I). These LYK-I actions of the IR are linked to changes in phosphorylation of a network of proteins involved in the regulation of extracellular matrix organization, cell cycle, ATM signaling and cellular senescence; and result in upregulation of expression of multiple extracellular matrix-related genes and proteins, down-regulation of immune/interferon-related genes and proteins, and increased sensitivity to apoptosis. Thus, in addition to classical ligand and tyrosine kinase-dependent (LYK-D) signaling, the IR regulates a second, ligand and tyrosine kinase-independent (LYK-I) pathway, which regulates the cellular machinery involved in senescence, matrix interaction and response to extrinsic challenges.

Suggested Citation

  • Hirofumi Nagao & Ashok Kumar Jayavelu & Weikang Cai & Hui Pan & Jonathan M. Dreyfuss & Thiago M. Batista & Bruna B. Brandão & Matthias Mann & C. Ronald Kahn, 2023. "Unique ligand and kinase-independent roles of the insulin receptor in regulation of cell cycle, senescence and apoptosis," Nature Communications, Nature, vol. 14(1), pages 1-18, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-022-35693-5
    DOI: 10.1038/s41467-022-35693-5
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