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首页> 外文期刊>Archives of Biochemistry and Biophysics >Hormonal regulation of stearoyl coenzyme-A desaturase 1 activity and gene expression in primary cultures of chicken hepatocytes.
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Hormonal regulation of stearoyl coenzyme-A desaturase 1 activity and gene expression in primary cultures of chicken hepatocytes.

机译:鸡肝细胞原代培养中硬脂酰辅酶A去饱和酶1活性和基因表达的激素调节。

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Previous studies have provided evidence for the important role of liver stearoyl-CoA desaturase (SCD) in excessive adiposity in the chicken and suggest that the difference in SCD activity between fat and lean chickens could be explained by a difference in SCD1 gene expression. In the present study, the regulation of SCD1 gene expression was analyzed as the result of insulin and glucagon action, using primary cultures of 6-week-old chicken hepatocytes. Insulin increased SCD1 activity and mRNA levels, whereas glucagon decreased dramatically both the enzyme activity and the mRNA levels. Nuclear run-on transcription assays and mRNA stability investigations demonstrated that insulin and glucagon effects on SCD1 gene expression was primarily transcriptional. Furthermore, the results indicated that the glucagon-mediated inhibition of SCD1 gene transcription was more potent than just counteracting the insulin-mediated effect. These data represent the first demonstration that the glucagon effect on the SCD1 gene expression is primarily transcriptional. Moreover, among hepatic genes involved in lipid metabolism in chicken, SCD1 is the first gene shown to be regulated at the transcriptional level by insulin, in the absence of triiodothyronine. These data point out the potency of the growing chicken hepatocyte culture model in contrast with the embryonic cell culture model as regards the investigations of the insulin effect on gene expression. Copyright 1999 Academic Press.
机译:先前的研究为肝脏硬脂酰辅酶A去饱和酶(SCD)在鸡体内过多肥胖中的重要作用提供了证据,并表明脂肪和瘦鸡之间SCD活性的差异可以用SCD1基因表达的差异来解释。在本研究中,使用6周龄鸡肝细胞的原代培养,分析了SCD1基因表达的调节是胰岛素和胰高血糖素作用的结果。胰岛素增加SCD1活性和mRNA水平,而胰高血糖素则显着降低酶活性和mRNA水平。核转录转录测定和mRNA稳定性研究表明,胰岛素和胰高血糖素对SCD1基因表达的影响主要是转录。此外,结果表明,胰高血糖素介导的对SCD1基因转录的抑制作用比仅仅抵消胰岛素介导的作用更有效。这些数据代表了胰高血糖素对SCD1基因表达的作用主要是转录的证明。此外,在涉及鸡脂质代谢的肝基因中,SCD1是第一个被证明在缺乏三碘甲状腺素的情况下受胰岛素在转录水平调控的基因。这些数据指出,在研究胰岛素对基因表达的影响方面,与胚胎细胞培养模型相比,鸡肝细胞培养模型正在发展。版权所有1999,学术出版社。

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