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The insulin-like growth factor-1 receptor is a negative regulator of nitric oxide bioavailability and insulin sensitivity in the endothelium.
- Source :
-
Diabetes [Diabetes] 2011 Aug; Vol. 60 (8), pp. 2169-78. Date of Electronic Publication: 2011 Jun 15. - Publication Year :
- 2011
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Abstract
- Objective: In mice, haploinsufficiency of the IGF-1 receptor (IGF-1R(+/-)), at a whole-body level, increases resistance to inflammation and oxidative stress, but the underlying mechanisms are unclear. We hypothesized that by forming insulin-resistant heterodimers composed of one IGF-1Rαβ and one insulin receptor (IR), IRαβ complex in endothelial cells (ECs), IGF-1R reduces free IR, which reduces EC insulin sensitivity and generation of the antioxidant/anti-inflammatory signaling radical nitric oxide (NO).<br />Research Design and Methods: Using a number of complementary gene-modified mice with reduced IGF-1R at a whole-body level and specifically in EC, and complementary studies in EC in vitro, we examined the effect of changing IGF-1R/IR stoichiometry on EC insulin sensitivity and NO bioavailability.<br />Results: IGF-1R(+/-) mice had enhanced insulin-mediated glucose lowering. Aortas from these mice were hypocontractile to phenylephrine (PE) and had increased basal NO generation and augmented insulin-mediated NO release from EC. To dissect EC from whole-body effects we generated mice with EC-specific knockdown of IGF-1R. Aortas from these mice were also hypocontractile to PE and had increased basal NO generation. Whole-body and EC deletion of IGF-1R reduced hybrid receptor formation. By reducing IGF-1R in IR-haploinsufficient mice we reduced hybrid formation, restored insulin-mediated vasorelaxation in aorta, and insulin stimulated NO release in EC. Complementary studies in human umbilical vein EC in which IGF-1R was reduced using siRNA confirmed that reducing IGF-1R has favorable effects on NO bioavailability and EC insulin sensitivity.<br />Conclusions: These data demonstrate that IGF-1R is a critical negative regulator of insulin sensitivity and NO bioavailability in the endothelium.
- Subjects :
- Animals
Aorta drug effects
Biological Availability
Down-Regulation
Glucose metabolism
Glucose Intolerance genetics
Humans
Insulin Resistance
Male
Mice
Mice, Inbred C57BL
Nitric Oxide Synthase Type III metabolism
Phenylephrine pharmacology
Receptor, IGF Type 1 deficiency
Receptor, IGF Type 1 genetics
Receptor, Insulin genetics
Signal Transduction
Umbilical Veins cytology
Vasoconstriction drug effects
Endothelial Cells metabolism
Nitric Oxide metabolism
Receptor, IGF Type 1 physiology
Receptor, Insulin physiology
Subjects
Details
- Language :
- English
- ISSN :
- 1939-327X
- Volume :
- 60
- Issue :
- 8
- Database :
- MEDLINE
- Journal :
- Diabetes
- Publication Type :
- Academic Journal
- Accession number :
- 21677284
- Full Text :
- https://doi.org/10.2337/db11-0197