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Mechanisms Underlying the Synergistic Action of Insulin and Growth Hormone on IGF-I and -II Expression in Grass Carp Hepatocytes

机译:胰岛素和生长激素协同作用对草鱼肝细胞IGF-I和-II表达的潜在作用机制

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摘要

In mammals, insulin is known to modify growth hormone (GH)-induced IGF-I expression at the hepatic level, which also contributes to the functional crosstalk between energy homeostasis and somatotropic axis. However, the studies on the comparative aspects of this phenomenon are limited and the mechanisms involved have not been fully characterized. Using a serum-free culture of grass carp hepatoctyes, the functional interaction between GH and insulin on hepatic expression of IGF-I and -II was examined in a fish model. In carp hepatocytes, GH could up-regulate IGF-I and -II mRNA expression via the JAK2/STAT5, MEK/ERK and PI3K/Akt pathways. These stimulatory effects were mimicked by insulin via activation of the PI3K/Akt but not MEK/ERK and P38 MAPK cascades. Although insulin did not activate JAK2 and STAT5 at hepatocyte level, insulin-induced IGF-I and -II mRNA expression were highly dependent on the normal functioning of JAK2/STAT5 pathway. In parallel experiments, insulin co-treatment was found to markedly enhance IGF-I and -II responses induced by GH and these potentiating effects were mediated by insulin receptor (InsR) but not IGF-I receptor. Interestingly, co-treatment with GH also enhanced insulin-induced InsR phosphorylation with a current elevation in protein:protein interaction between GH receptor and phosphorylated InsR and these stimulatory effects were noted with further enhancement in STAT5, ERK1/2 and Akt phosphorylation at hepatocyte level. Consistent with these findings, the potentiating effects of GH and insulin co-treatment on IGF-I and -II mRNA expression were found to be suppressed/abolished by inhibiting JAK2/STAT5, MEK/ERK and PI3K/Akt but not P38 MAPK pathways. These results, as a whole, suggest that insulin and GH can act in a synergistic manner in the carp liver to up-regulate IGF-I and -II expression through protein:protein interaction at the receptor level followed by potentiation in post-receptor signaling.
机译:在哺乳动物中,已知胰岛素会在肝水平上修饰生长激素(GH)诱导的IGF-1的表达,这也有助于能量稳态与生长轴之间的功能性相互作用。但是,对这种现象的比较方面的研究是有限的,并且所涉及的机理还没有被充分表征。使用无血清草鱼肝八倍体培养物,在鱼模型中检查了GH和胰岛素在肝表达IGF-I和-II上的功能相互作用。在鲤鱼肝细胞中,GH可通过JAK2 / STAT5,MEK / ERK和PI3K / Akt通路上调IGF-I和-II mRNA表达。胰岛素通过激活PI3K / Akt而不是MEK / ERK和P38 MAPK级联来模仿这些刺激作用。尽管胰岛素在肝细胞水平上不激活JAK2和STAT5,但胰岛素诱导的IGF-I和-II mRNA表达高度依赖于JAK2 / STAT5途径的正常功能。在平行实验中,发现胰岛素共同治疗可显着增强GH诱导的IGF-I和-II反应,并且这些增强作用是由胰岛素受体(InsR)而非IGF-I受体介导的。有趣的是,与GH共同治疗还增强了胰岛素诱导的InsR磷酸化,目前GH受体与磷酸化的InsR之间的蛋白质:蛋白质相互作用有所提高,并且这些刺激作用随着肝细胞水平STAT5,ERK1 / 2和Akt磷酸化的进一步增强而被注意到。与这些发现一致,发现通过抑制JAK2 / STAT5,MEK / ERK和PI3K / Akt而非P38 MAPK途径,GH /胰岛素协同治疗对IGF-I和-II mRNA表达的增强作用被抑制/消除。总的来说,这些结果表明胰岛素和GH可以在鲤鱼肝脏中以协同方式起作用,通过受体水平上的蛋白质:蛋白质相互作用,继而增强受体后信号传导,从而上调IGF-I和-II表达。 。

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