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Aminoguanidine normalizes ET-1-induced aortic contraction in type 2 diabetic Otsuka Long-Evans Tokushima Fatty (OLETF) rats by suppressing Jab1-mediated increase in ET(A)-receptor expression
Authors:Nemoto Shingo  Taguchi Kumiko  Matsumoto Takayuki  Kamata Katsuo  Kobayashi Tsuneo
Affiliation:Department of Physiology and Morphology, Institute of Medicinal Chemistry, Hoshi University, Shinagawa-ku, Tokyo 142-8501, Japan.
Abstract:Circulating levels of endothelin (ET)-1 are increased in the diabetic state, as is endogenous ET(A)-receptor-mediated vasoconstriction. However, the responsible mechanisms remain unknown. We hypothesized that ET-1-induced vasoconstriction is augmented in type 2 diabetes with hyperglycemia through an increment in advanced glycation end-products (AGEs). So, we investigated whether treatment with aminoguanidine (AG), an inhibitor of AGEs, would normalize the ET-1-induced contraction induced by ET-1 in strips of thoracic aortas isolated from OLETF rats at the chronic stage of diabetes. In such aortas (vs. those from age-matched genetic control LETO rats): (1) the ET-1-induced contraction was enhanced, (2) the levels of HIF1α/ECE1/plasma ET-1 and plasma CML-AGEs were increased, (3) the ET-1-stimulated ERK phosphorylation mediated by ET(A)-R was increased, (4) the expression level of Jab1-modified ET(A)-R protein was reduced, and (5) the expression level of O-GlcNAcylated ET(A)-R protein was increased. Aortas isolated from such OLETF rats that had been treated with AG (50mg/kg/day for 10 weeks) exhibited reduced ET-1-induced contraction, suppressed ET-1-stimulated ERK phosphorylation accompanied by down-regulation of ET(A)-R, and increased modification of ET(A)-R by Jab1. Such AG-treated rats exhibited normalized plasma ET-1 and CML-AGE levels, and their aortas exhibited decreased HIF1α/ECE1 expression. However, such AG treatment did not alter the elevated levels of plasma glucose or insulin, or systolic blood pressure seen in OLETF rats. These data from the OLETF model suggest that within the timescale studied here, AG normalizes ET-1-induced aortic contraction by suppressing ET(A)-R/ERK activities and/or by normalizing the imbalance between Jab1 and O-GlcNAc in type 2 diabetes.
Keywords:AG, aminoguanidine   AGEs, advanced glycation end-products   CML, N epsilon-(carboxymethyl) lysine   ECE1, endothelin converting enzyme   ERK, extracellular signal-regulated kinase   ET-1, endothelin-1   ETA-R, endothelin type A receptor   ETB-R, endothelin type B receptor   GPCRs, G protein-coupled receptors   HDL, high-density lipoprotein cholesterol   HIF1α, hypoxia-inducible factor 1 alpha   HIF1β, hypoxia-inducible factor 1 beta   IRS1, insulin receptor substrate 1   Jab1, Jun activation domain-binding protein   LDL, low-density lipoprotein cholesterol   LETO, Long–Evans Tokushima Otsuka   MAPK, mitogen-activated protein kinase   NEFA, non-esterified fatty acid   OLETF rat, Otsuka Long–Evans Tokushima Fatty rat   O-GlcNAc, O-glycoside-linked β-N-acetylglucosamine   pVHL, von Hippel–Lindau tumor suppressor protein   RAGE, receptor for AGEs
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