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The steroid hormone 20-hydroxyecdysone counteracts insulin signaling via insulin receptor dephosphorylation

机译:类固醇激素20-羟基迪克酮通过胰岛素受体去磷酸化抵消胰岛素信号传导

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The insulin receptor (INSR) binds insulin to promote body growth and maintain normal blood glucose levels. While it is known that steroid hormones such as estrogen and 20-hydroxyecdysone counteract insulin function, the molecular mechanisms responsible for this attenuation remain unclear. In the present study, using the agricultural pest lepidopteran Helicoverpa armigera as a model, we proposed that the steroid hormone 20-hydroxyecdysone (20E) induces dephosphorylation of INSR to counteract insulin function. We observed high expression and phosphorylation of INSR during larval feeding stages that decreased during metamorphosis. Insulin upregulated INSR expression and phosphorylation, whereas 20E repressed INSR expression and induced INSR dephosphorylation in?vivo. Protein tyrosine phosphatase 1B (PTP1B, encoded by Ptpn1) dephosphorylated INSR in?vivo. PTEN (phosphatase and tensin homolog deleted on chromosome 10) was critical for 20E-induced INSR dephosphorylation by maintaining the transcription factor Forkhead box O (FoxO) in the nucleus, where FoxO promoted Ptpn1 expression and repressed Insr expression. Knockdown of Ptpn1 using RNA interference maintained INSR phosphorylation, increased 20E production, and accelerated pupation. RNA interference of Insr in larvae repressed larval growth, decreased 20E production, delayed pupation, and accumulated hemolymph glucose levels. Taken together, these results suggest that a high 20E titer counteracts the insulin pathway by dephosphorylating INSR to stop larval growth and accumulate glucose in the hemolymph.
机译:胰岛素受体(INSR)结合胰岛素以促进体生长并维持正常的血糖水平。虽然已知类固醇激素如雌激素和20-羟基迪克隆抗胰岛素功能,但负责这种衰减的分子机制仍然不清楚。在本研究中,使用农业害虫鳞翅目南方甲骨蛋白作为一种模型,我们提出了类固醇激素20-羟基迪克松(20e)诱导insr的去磷酸化以抵消胰岛素功能。在变态期间减少的幼虫喂养阶段期间观察到insr的高表达和磷酸化。胰岛素上调的INSR表达和磷酸化,而20E压抑INSR表达并诱导INSR去磷酸化体内β体内。蛋白质酪氨酸磷酸酶1B(PTP1b,PTPN1编码)去磷酸化的INSR在α体内。 PTEN(磷酸酶和染色体10上缺失的磷酸酶和染色体同源物)通过在核中维持转录因子尖头盒O(FOXO)来临时为20E诱导的INSR去磷酸化,其中FOXO促进了PTPN1表达和抑制INSR表达。使用RNA干扰的PTPN1敲低维持INSR磷酸化,增加20E的生产和加速蛹化。幼虫在幼虫抑制幼虫生长,20E的生产,延迟瘀血和累积血淋巴葡萄糖水平下降的RNA干扰。总之,这些结果表明,高20E滴度通过去磷酸化的insr来抵消胰岛素途径,以阻止幼虫生长并在血淋巴中积累葡萄糖。

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