Homozygous receptors for insulin and not IGF-1 accelerate intimal hyperplasia in insulin resistance and diabetes

Nat Commun. 2019 Sep 27;10(1):4427. doi: 10.1038/s41467-019-12368-2.

Abstract

Insulin and IGF-1 actions in vascular smooth muscle cells (VSMC) are associated with accelerated arterial intima hyperplasia and restenosis after angioplasty, especially in diabetes. To distinguish their relative roles, we delete insulin receptor (SMIRKO) or IGF-1 receptor (SMIGF1RKO) in VSMC and in mice. Here we report that intima hyperplasia is attenuated in SMIRKO mice, but not in SMIGF1RKO mice. In VSMC, deleting IGF1R increases homodimers of IR, enhances insulin binding, stimulates p-Akt and proliferation, but deleting IR decreases responses to insulin and IGF-1. Studies using chimeras of IR(extracellular domain)/IGF1R(intracellular-domain) or IGF1R(extracellular domain)/IR(intracellular-domain) demonstrate homodimer IRα enhances insulin binding and signaling which is inhibited by IGF1Rα. RNA-seq identifies hyaluronan synthase2 as a target of homo-IR, with its expression increases by IR activation in SMIGF1RKO mice and decreases in SMIRKO mice. Enhanced intima hyperplasia in diabetes is mainly due to insulin signaling via homo-IR, associated with increased Has2 expression.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • Animals
  • Diabetes Mellitus / metabolism*
  • Disease Models, Animal
  • Femoral Artery / injuries
  • Femoral Artery / metabolism
  • Femoral Artery / pathology
  • Homozygote
  • Hyaluronan Synthases / metabolism
  • Hyperplasia / metabolism*
  • Insulin / metabolism
  • Insulin Resistance / physiology*
  • Insulin-Like Growth Factor I / metabolism
  • Male
  • Mice
  • Mice, Inbred C57BL
  • Muscle, Smooth, Vascular / metabolism
  • Receptor, IGF Type 1 / chemistry
  • Receptor, IGF Type 1 / metabolism*
  • Receptor, Insulin / chemistry
  • Receptor, Insulin / metabolism*
  • Signal Transduction

Substances

  • Igf1r protein, mouse
  • Insulin
  • Insulin-Like Growth Factor I
  • Has2 protein, mouse
  • Hyaluronan Synthases
  • Receptor, IGF Type 1
  • Receptor, Insulin