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Modulation of Growth Hormone Signal Transduction in Kidneys of Streptozotocin-Induced Diabetic Animals Effect of a Growth Hormone Receptor Antagonist

机译:生长激素受体拮抗剂对链脲佐菌素诱导的糖尿病动物肾脏中生长激素信号转导的调节

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Growth hormone (GH) and IGFs have a long distinguished history in diabetes, with possible participation in the development of renal complications. The implicated effect of GH in diabetic end-stage organ damage may be mediated by growth hormone receptor (GHR) or postreceptor events in GH signal transduction. The present study investigates the effects of diabetes induced by streptozotocin (STZ) on renal GH signaling. Our results demonstrate that JAK2, insulin receptor substrate (IRS)-l, She, ERKs, and Akt are widely distributed in the kidney, and after GH treatment, there is a significant increase in phosphorylation of these proteins in STZ-induced diabetic rats compared with controls. Moreover, the GH-induced association of IRS-1/ phosphatidylinositol 3-kinase, IRS-1/growth factor receptor bound 2 (Grb2), and Shc/Grb2 are increased in diabetic rats as well. Immunohistochemical studies show that GH-induced p-Akt and p-ERK activation is apparently more pronounced in the kidneys of diabetic rats. Administration of G120K-PEG, a GH antagonist, in diabetic mice shows inhibitory effects on diabetic renal enlargement and reverses the alterations in GH signal transduction observed in diabetic animals. The present study demonstrates a role for GH signaling in the pathogenesis of early diabetic renal changes and suggests that specific GHR blockade may present a new concept in the treatment of diabetic kidney disease.
机译:生长激素(GH)和IGF在糖尿病中有着悠久的历史,可能参与肾脏并发症的发展。 GH在糖尿病末期器官损伤中的影响可能是由生长激素受体(GHR)或GH信号转导中的受体后事件介导的。本研究调查了链脲佐菌素(STZ)诱导的糖尿病对肾脏GH信号的影响。我们的研究结果表明,JAK2,胰岛素受体底物(IRS)-1,She,ERK和Akt在肾脏中广泛分布,经GH治疗后,与STZ诱导的糖尿病大鼠相比,这些蛋白质的磷酸化显着增加与控件。而且,在糖尿病大鼠中,GH诱导的IRS-1 /磷脂酰肌醇3-激酶,IRS-1 /生长因子受体结合2(Grb2)和Shc / Grb2的缔合也增加。免疫组织化学研究表明,在糖尿病大鼠的肾脏中,GH诱导的p-Akt和p-ERK激活明显更为明显。在糖尿病小鼠中施用G120K-PEG(一种GH拮抗剂)显示出对糖尿病性肾脏增大的抑制作用,并逆转了在糖尿病动物中观察到的GH信号转导的变化。本研究证明了GH信号通路在糖尿病早期肾脏变化的发病机制中的作用,并提示特定的GHR阻断可能为糖尿病肾脏疾病的治疗提供新的概念。

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