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Insulin-Regulated Srebp-1c and Pck1 mRNA Expression in Primary Hepatocytes from Zucker Fatty but Not Lean Rats Is Affected by Feeding Conditions

机译:喂养条件会影响祖克脂肪而非瘦大鼠原代肝细胞中胰岛素调节的Srebp-1c和Pck1 mRNA表达

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摘要

Insulin regulates the transcription of genes for hepatic glucose and lipid metabolism. We hypothesized that this action may be impaired in hepatocytes from insulin resistant animals. Primary hepatocytes from insulin sensitive Zucker lean (ZL) and insulin resistant Zucker fatty (ZF) rats in ad libitum or after an overnight fasting were isolated, cultured and treated with insulin and other compounds for analysis of gene expression using real-time PCR. The mRNA levels of one insulin-induced (Srebp-1c) and one insulin-suppressed (Pck1) genes in response to insulin, glucagon, and compactin treatments in hepatocytes from ad libitum ZL and ZF rats were analyzed. Additionally, the effects of insulin and T1317 on their levels in hepatocytes from ad libitum or fasted ZL or ZF rats were compared. The mRNA levels of Srebp-1c, Fas, and Scd1, but not that of Insr, Gck and Pck1, were higher in freshly isolated hepatocytes from ad libitum ZF than that from ZL rats. These patterns of Srebp-1c and Pck1 mRNA levels remained in primary hepatocyte cultured in vitro. Insulin's ability to regulate Srebp-1c and Pck1 expression was diminished in hepatocytes from ad libitum ZF, but not ZL rats. Glucagon or compactin suppressed Srebp-1c mRNA expression in lean, but not fatty hepatocytes. However, glucagon induced Pck1 mRNA expression similarly in hepatocytes from ad libitum ZL and ZF rats. Insulin caused the same dose-dependent increase of Akt phosphorylation in hepatocytes from ad libitum ZL and ZF rats. It synergized with T1317 to induce Srebp-1c, and suppressed Pck1 mRNA levels in hepatocytes from fasted, but not that from ad libitum ZF rats. We demonstrated that insulin was unable to regulate its downstream genes' mRNA expression in hepatocytes from ad libitum ZF rats. This impairment can be partially restored in hepatocytes from ZF rats after an overnight fasting, a phenomenon that deserves further investigation.
机译:胰岛素调节肝糖和脂质代谢基因的转录。我们假设这种作用可能会在胰岛素抵抗动物的肝细胞中受损。随意或隔夜禁食后,从胰岛素敏感性祖克瘦肉(ZL)和胰岛素抵抗性祖克脂肪(ZF)大鼠中分离原代肝细胞,进行培养,并用胰岛素和其他化合物处理,以使用实时PCR分析基因表达。分析了自由采食ZL和ZF大鼠肝脏细胞中一种胰岛素诱导(Srebp-1c)和一种胰岛素抑制(Pck1)基因对胰岛素,胰高血糖素和紧致蛋白反应的mRNA水平。此外,比较了胰岛素和T1317对随意或禁食ZL或ZF大鼠肝细胞中其水平的影响。从ZF大鼠体内新鲜分离得到的肝细胞中,Srebp-1c,Fas和Scd1的mRNA水平高于Insr,Gck和Pck1的mRNA水平,但高于ZL大鼠。 Srebp-1c和Pck1 mRNA水平的这些模式保留在体外培养的原代肝细胞中。 随意 ZF大鼠的肝细胞中胰岛素调节Srebp-1c和 Pck1 表达的能力减弱,但ZL大鼠没有。胰高血糖素或紧缩蛋白抑制瘦脂肪细胞中的 Srebp-1c mRNA表达,但不抑制脂肪肝细胞。然而,胰高血糖素诱导的随意 ZL和ZF大鼠肝细胞中的 Pck1 mRNA表达也相似。胰岛素导致随意 ZL和ZF大鼠肝细胞Akt磷酸化的剂量依赖性增加。它与T1317协同诱导 Srebp-1c ,并抑制了禁食的ZF大鼠肝细胞的 Pck1 mRNA水平,但没有抑制。我们证明胰岛素不能调节随意 ZF大鼠肝细胞下游基因的mRNA表达。过夜禁食后,ZF大鼠肝细胞中的这种损伤可以部分恢复,这一现象值得进一步研究。

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