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首页> 外文期刊>Diabetes/metabolism research and reviews >High glucose activates pituitary proopiomelanocortin gene expression: possible role of free radical-sensitive transcription factors.
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High glucose activates pituitary proopiomelanocortin gene expression: possible role of free radical-sensitive transcription factors.

机译:高糖可激活垂体前皮黑素皮质素基因表达:自由基敏感性转录因子的可能作用。

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BACKGROUND: Hyperglycemia is recognized as a metabolic stress, and indeed it is known to stimulate hypothalamo-pituitary-adrenal (HPA) axis, a representative anti-stress system, in patients with diabetes mellitus or in animal models of hyperglycemia. Thus, we tried to clarify the molecular mechanism of glucose-induced HPA axis activation. METHODS: We studied the effect of high glucose on the transcriptional regulation of proopiomelanocortin (POMC) gene that encodes adrenocorticotropic hormone, a central mediator of HPA axis, using AtT20 corticotroph cell line in vitro. RESULTS: We found that high glucose concentration (24 mM) significantly stimulated the 5'-promoter activity of POMC gene. The effect was promoter-specific, and was mimicked by nuclear factor-kappaB (NF-kappaB)- or AP1-responsive promoters but not by cAMP-responsive element or serum-response element-containing promoters. Furthermore, the stimulatory effect of high glucose on POMC gene was eliminated by NF-kappaB and AP1 inhibitors, suggesting the involvement of the transcriptional factors. The POMC 5'-promoter has the canonical NF-kappaB consensus sequence, and gel shift assay showed the binding of NF-kappaB to the element. Finally, the effect of high glucose was completely abolished by treatment with a radical quencher 4-hydroxy-2,2,6,6-tetramethylpiperidine-1-oxyl (TEMPOL). CONCLUSIONS: Our data suggest that hyperglycemia activates POMC gene expression, at least partly, via NF-kappaB/AP1, and that high-glucose-induced free radical generation may mediate the activation of these transcription factors, which in turn stimulates the transcription of POMC gene.
机译:背景:高血糖被认为是一种代谢应激,在糖尿病患者或高血糖动物模型中,确实可以刺激下丘脑-垂体-肾上腺(HPA)轴(一种典型的抗应激系统)。因此,我们试图阐明葡萄糖诱导的HPA轴激活的分子机制。方法:我们使用AtT20皮质营养细胞系研究了高葡萄糖对编码促肾上腺皮质激素(HPA轴的主要介体)的促黑素皮质激素(POMC)基因转录调控的影响。结果:我们发现高浓度的葡萄糖(24 mM)显着刺激了POMC基因的5'启动子活性。该作用是启动子特异性的,并且被核因子-kappaB(NF-kappaB)或AP1响应启动子模仿,但不被cAMP响应元件或含血清响应元素的启动子模仿。此外,NF-κB和AP1抑制剂消除了高糖对POMC基因的刺激作用,表明转录因子的参与。 POMC 5'启动子具有规范的NF-kappaB共有序列,并且凝胶位移分析显示NF-kappaB与元素的结合。最后,用自由基淬灭剂4-羟基-2,2,6,6-四甲基哌啶-1-氧基(TEMPOL)处理可完全消除高血糖的影响。结论:我们的数据表明高血糖至少部分地通过NF-κB/ AP1激活了POMC基因的表达,并且高糖诱导的自由基生成可能介导了这些转录因子的激活,进而刺激了POMC的转录。基因。

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