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Signals related to glucose metabolism regulate islet amyloid polypeptide (IAPP) gene expression in human pancreatic islets.

机译:与葡萄糖代谢有关的信号调节人胰岛中的胰岛淀粉样多肽(IAPP)基因表达。

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Intracellular pathways involved in glucose stimulation of IAPP gene expression were studied in human pancreatic islets. Glucose (16.7 mM), but not mannose, caused a 2.3-fold increase in IAPP mRNA levels; this effect was inhibited by actinomycin D. In the presence of the non-metabolizable 6-deoxyglucose (16.7 mM) IAPP mRNA levels were markedly depleted. Both mannoheptulose and verapamil blocked glucose-induced stimulation of the IAPP gene. The magnitude of the insulin gene response to glucose was smaller (1.3-fold); none of the above-mentioned agents had significant effects on insulin mRNA content. Tunicamycin elicited a 2.4- and 2.7-fold increase in IAPP mRNA levels in the low and high glucose media, respectively; however, it did not change insulin mRNA. It had no effect on rat IAPP or insulin mRNAs, either. We conclude that IAPP gene expression is regulated by signals derived from glucose metabolism and that intracellular calcium may be involved in this response. IAPP and insulin genes are not co-regulated in cultured human pancreatic islets.
机译:在人胰岛中研究了葡萄糖刺激IAPP基因表达的细胞内途径。葡萄糖(16.7 mM)而非甘露糖引起IAPP mRNA水平增加2.3倍;这种作用被放线菌素D抑制。在存在不可代谢的6-脱氧葡萄糖(16.7 mM)的情况下,IAPP mRNA水平显着减少。甘露庚糖和维拉帕米均可阻断葡萄糖诱导的IAPP基因刺激。胰岛素基因对葡萄糖的反应幅度较小(1.3倍);上述试剂均未对胰岛素mRNA含量产生显着影响。衣霉素在低和高葡萄糖培养基中分别引起IAPP mRNA水平增加2.4倍和2.7倍;然而,它并没有改变胰岛素的mRNA。它对大鼠IAPP或胰岛素mRNA均无影响。我们得出的结论是,IAPP基因表达受到葡萄糖代谢信号的调控,并且细胞内钙可能参与了这一反应。在培养的人胰岛中,IAPP和胰岛素基因不受共同调节。

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