首页> 外文期刊>Molecular and Cellular Endocrinology >Activation of bombesin receptor Subtype-3 by [D-Tyr(6),beta-Ala(11),Phe(13),Nle(14)]bombesin(6-14) increased glucose uptake and lipogenesis in human and rat adipocytes
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Activation of bombesin receptor Subtype-3 by [D-Tyr(6),beta-Ala(11),Phe(13),Nle(14)]bombesin(6-14) increased glucose uptake and lipogenesis in human and rat adipocytes

机译:通过[D-Tyr(6),β-Ala(11),PHE(13),NLE(14)] Bombesin(6-14)在人和大鼠脂肪细胞中增加葡萄糖摄取和脂肪生成的血栓受体亚型-3的激活

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摘要

BRS-3 has an important role in glucose homeostasis. Its expression was reduced in skeletal muscle from obese and/or diabetic patients, and BRS-3 KO-mice developed obesity. In this work, focused on rat/human adipose tissue, BRS-3 gene-expression was lower than normal-levels in hyperlipidemic, type-2-diabetic (T2D), and type-1-diabetic rats and also in obese (OB) and T2D patients. Moreover, BRS-3 protein levels were decreased in diabetic rat and in obese and diabetic human fat pieces; but neither mutation nor even polymorphism in the BRS-3-gene was found in OB or T2D patients. Interestingly, in rat and human adipocytes, without metabolic alterations, [D-Tyr(6),beta-Ala(11),phe(13),Nle(14)]bombesin(6-14) -BRS-3- agonist-, as insulin, enhanced BRS-3 gene/protein expression, increased, PKB, p70s6K, MAPKs and p90RSK1 phosphorylation-levels, and induced a concentration-related stimulation of glucose transport, GLUT-4 membrane translocation and lipogenesis, exclusively mediated by BRS-3, and abolished by wortmannin, PD98059 or rapamacyn. These results confirm that BRS-3 and/or its agonist are a potential therapeutic tool for obesity/diabetes. (C) 2018 Elsevier B.V. All rights reserved.
机译:BRS-3在葡萄糖稳态中具有重要作用。它的表达从肥胖和/或糖尿病患者的骨骼肌中减少,BRS-3 KO-MIGE发育肥胖症。在这项工作中,专注于大鼠/人脂肪组织,BRS-3基因表达低于高脂质化,2型 - 糖尿病(T2D)和1型 - 糖尿病大鼠的正常水平,以及糖尿病大鼠(OB)和T2D患者。此外,BRS-3蛋白水平在糖尿病大鼠和肥胖和糖尿病人脂肪件中减少;但在OB或T2D患者中发现BRS-3-基因中的突变也不是多态性。有趣的是,在大鼠和人脂肪细胞中,没有代谢改变,[D-Tyr(6),β-Ala(11),pHE(13),nle(14)] Bombesin(6-14)-Brs-3-激动剂 - ,作为胰岛素,增强BRS-3基因/蛋白表达,增加,PKB,P70S6K,MAPK和P90RSK1磷酸化水平,并诱导血糖输送的浓度相关的刺激,凝胶-4膜易位和脂肪生成,仅由BRS介导3,并由Wortmannin,PD98059或rapamacyn废除。这些结果证实,BRS-3和/或其激动剂是肥胖/糖尿病的潜在治疗工具。 (c)2018 Elsevier B.v.保留所有权利。

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