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葡萄糖诱导的 O₂ 消耗激活大鼠胰岛素分泌胰腺 β 细胞中的缺氧诱导因子 1 和 2。

Glucose-induced O₂ consumption activates hypoxia inducible factors 1 and 2 in rat insulin-secreting pancreatic beta-cells.

机构信息

Pôle d'Endocrinologie, Diabète et Nutrition, Institut de Recherche Expérimentale et Clinique, Université Catholique de Louvain, Brussels, Belgium.

出版信息

PLoS One. 2012;7(1):e29807. doi: 10.1371/journal.pone.0029807. Epub 2012 Jan 3.

Abstract

BACKGROUND

Glucose increases the expression of glycolytic enzymes and other hypoxia-response genes in pancreatic beta-cells. Here, we tested whether this effect results from the activation of Hypoxia-Inducible-factors (HIF) 1 and 2 in a hypoxia-dependent manner.

METHODOLOGY/PRINCIPAL FINDINGS: Isolated rat islets and insulin-secreting INS-1E cells were stimulated with nutrients at various pO₂ values or treated with the HIF activator CoCl₂. HIF-target gene mRNA levels and HIF subunit protein levels were measured by real-time RT-PCR, Western Blot and immunohistochemistry. The formation of pimonidazole-protein adducts was used as an indicator of hypoxia. In INS-1E and islet beta-cells, glucose concentration-dependently stimulated formation of pimonidazole-protein adducts, HIF1 and HIF2 nuclear expression and HIF-target gene mRNA levels to a lesser extent than CoCl₂ or a four-fold reduction in pO₂. Islets also showed signs of HIF activation in diabetic Lepr(db/db) but not non-diabetic Lepr(db/+) mice. In vitro, these glucose effects were reproduced by nutrient secretagogues that bypass glycolysis, and were inhibited by a three-fold increase in pO₂ or by inhibitors of Ca²⁺ influx and insulin secretion. In INS-1E cells, small interfering RNA-mediated knockdown of Hif1α and Hif2α, alone or in combination, indicated that the stimulation of glycolytic enzyme mRNA levels depended on both HIF isoforms while the vasodilating peptide adrenomedullin was a HIF2-specific target gene.

CONCLUSIONS/SIGNIFICANCE: Glucose-induced O₂ consumption creates an intracellular hypoxia that activates HIF1 and HIF2 in rat beta-cells, and this glucose effect contributes, together with the activation of other transcription factors, to the glucose stimulation of expression of some glycolytic enzymes and other hypoxia response genes.

摘要

背景

葡萄糖会在胰腺β细胞中增加糖酵解酶和其他低氧反应基因的表达。在这里,我们测试了这种影响是否是由于缺氧依赖性地激活低氧诱导因子(HIF)1 和 2 引起的。

方法/主要发现:用不同的 pO₂ 值的营养物质刺激分离的大鼠胰岛和胰岛素分泌细胞 INS-1E,或用 HIF 激活剂 CoCl₂处理。通过实时 RT-PCR、Western Blot 和免疫组织化学测量 HIF 靶基因 mRNA 水平和 HIF 亚基蛋白水平。用 pimonidazole-蛋白加合物的形成作为缺氧的指标。在 INS-1E 和胰岛β细胞中,葡萄糖浓度依赖性地刺激 pimonidazole-蛋白加合物、HIF1 和 HIF2 核表达以及 HIF 靶基因 mRNA 水平的形成,其程度低于 CoCl₂或 pO₂降低四倍。胰岛还在糖尿病 Lepr(db/db)但非非糖尿病 Lepr(db/+)小鼠中显示出 HIF 激活的迹象。在体外,这些葡萄糖作用可被绕过糖酵解的营养分泌物再现,并且可被 pO₂增加三倍或 Ca²⁺内流和胰岛素分泌抑制剂抑制。在 INS-1E 细胞中,Hif1α 和 Hif2α 的小干扰 RNA 介导的敲低,单独或组合使用,表明糖酵解酶 mRNA 水平的刺激取决于两种 HIF 同工型,而血管舒张肽肾上腺髓质素是 HIF2 的特异性靶基因。

结论/意义:葡萄糖诱导的 O₂消耗会在大鼠β细胞中产生细胞内缺氧,从而激活 HIF1 和 HIF2,这种葡萄糖作用与其他转录因子的激活一起,有助于葡萄糖对一些糖酵解酶和其他低氧反应基因的表达的刺激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d65e/3250482/9b1ad0ab0954/pone.0029807.g001.jpg

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