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内质网应激和 2 型糖尿病状态下抑制脱羟鸟氨酸合成酶可增强胰岛β细胞功能和存活。

Inhibition of deoxyhypusine synthase enhances islet {beta} cell function and survival in the setting of endoplasmic reticulum stress and type 2 diabetes.

机构信息

Department of Pharmacology, University of Virginia, Charlottesville, Virginia 22904, USA.

出版信息

J Biol Chem. 2010 Dec 17;285(51):39943-52. doi: 10.1074/jbc.M110.170142. Epub 2010 Oct 18.

Abstract

Islet β cell dysfunction resulting from inflammation, ER stress, and oxidative stress is a key determinant in the progression from insulin resistance to type 2 diabetes mellitus. It was recently shown that the enzyme deoxyhypusine synthase (DHS) promotes early cytokine-induced inflammation in the β cell. DHS catalyzes the conversion of lysine to hypusine, an amino acid that is unique to the translational elongation factor eIF5A. Here, we sought to determine whether DHS activity contributes to β cell dysfunction in models of type 2 diabetes in mice and β cell lines. A 2-week treatment of obese diabetic C57BLKS/J-db/db mice with the DHS inhibitor GC7 resulted in improved glucose tolerance, increased insulin release, and enhanced β cell mass. Thapsigargin treatment of β cells in vitro induces a picture of ER stress and apoptosis similar to that seen in db/db mice; in this setting, DHS inhibition led to a block in CHOP (CAAT/enhancer binding protein homologous protein) production despite >30-fold activation of Chop gene transcription. Blockage of CHOP translation resulted in reduction of downstream caspase-3 cleavage and near-complete protection of cells from apoptotic death. DHS inhibition appeared to prevent the cytoplasmic co-localization of eIF5A with the ER, possibly precluding the participation of eIF5A in translational elongation at ER-based ribosomes. We conclude that hypusination by DHS is required for the ongoing production of proteins, particularly CHOP, in response to ER stress in the β cell.

摘要

胰岛 β 细胞功能障碍是由炎症、内质网应激和氧化应激引起的,是从胰岛素抵抗发展为 2 型糖尿病的关键决定因素。最近的研究表明,酶脱羟鸟氨酸合成酶(DHS)促进了 β 细胞中早期细胞因子诱导的炎症反应。DHS 催化赖氨酸向 hypusine 的转化,hypusine 是一种只存在于翻译延伸因子 eIF5A 中的氨基酸。在这里,我们试图确定 DHS 活性是否会导致小鼠和 β 细胞系 2 型糖尿病模型中的 β 细胞功能障碍。用 DHS 抑制剂 GC7 对肥胖型糖尿病 C57BLKS/J-db/db 小鼠进行为期 2 周的治疗,可改善葡萄糖耐量、增加胰岛素释放并增强 β 细胞质量。体外用 thapsigargin 处理 β 细胞会诱导出类似于 db/db 小鼠的内质网应激和细胞凋亡的图像;在这种情况下,尽管 Chop 基因转录激活了 30 多倍,但 DHS 抑制导致 CHOP(CCAAT/增强子结合蛋白同源蛋白)的产生受阻。阻断 CHOP 翻译导致下游 caspase-3 切割减少,细胞几乎完全免受凋亡死亡的影响。DHS 抑制似乎阻止了 eIF5A 与内质网的细胞质共定位,可能排除了 eIF5A 在基于内质网的核糖体上参与翻译延伸的可能性。我们的结论是,DHS 的 hypusination 是 β 细胞内质网应激持续产生蛋白质(特别是 CHOP)所必需的。

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