Insulin receptors in β-cells are critical for islet compensatory growth response to insulin resistance

T Okada, CW Liew, J Hu, C Hinault… - Proceedings of the …, 2007 - National Acad Sciences
T Okada, CW Liew, J Hu, C Hinault, MD Michael, J Kr̈tzfeldt, C Yin, M Holzenberger…
Proceedings of the National Academy of Sciences, 2007National Acad Sciences
Insulin and insulin-like growth factor 1 (IGF1) are ubiquitous growth factors that regulate
proliferation in most mammalian tissues including pancreatic islets. To explore the specificity
of insulin receptors in compensatory β-cell growth, we examined two models of insulin
resistance. In the first model, we used liver-specific insulin receptor knockout (LIRKO) mice,
which exhibit hyperinsulinemia without developing diabetes due to a compensatory
increase in β-cell mass. LIRKO mice, also lacking functional insulin receptors in β-cells …
Insulin and insulin-like growth factor 1 (IGF1) are ubiquitous growth factors that regulate proliferation in most mammalian tissues including pancreatic islets. To explore the specificity of insulin receptors in compensatory β-cell growth, we examined two models of insulin resistance. In the first model, we used liver-specific insulin receptor knockout (LIRKO) mice, which exhibit hyperinsulinemia without developing diabetes due to a compensatory increase in β-cell mass. LIRKO mice, also lacking functional insulin receptors in β-cells (βIRKO/LIRKO), exhibited severe glucose intolerance but failed to develop compensatory islet hyperplasia, together leading to early death. In the second model, we examined the relative significance of insulin versus IGF1 receptors in islet growth by feeding high-fat diets to βIRKO and β-cell-specific IGF1 receptor knockout (βIGFRKO) mice. Although both groups on the high-fat diet developed insulin resistance, βIRKO, but not βIGFRKO, mice exhibited poor islet growth consistent with insulin-stimulated phosphorylation, nuclear exclusion of FoxO1, and reduced expression of Pdx-1. Together these data provide direct genetic evidence that insulin/FoxO1/Pdx-1 signaling is one pathway that is crucial for islet compensatory growth response to insulin resistance.
National Acad Sciences