Department of Pediatrics and Herman B. Wells Center for Pediatric Research, Indiana University School of Medicine, Indianapolis, Indiana 46202, USA.
J Clin Invest. 2010 Jun;120(6):2156-70. doi: 10.1172/JCI38924. Epub 2010 May 24.
In both type 1 and type 2 diabetes, pancreatic islet dysfunction results in part from cytokine-mediated inflammation. The ubiquitous eukaryotic translation initiation factor 5A (eIF5A), which is the only protein to contain the amino acid hypusine, contributes to the production of proinflammatory cytokines. We therefore investigated whether eIF5A participates in the inflammatory cascade leading to islet dysfunction during the development of diabetes. As described herein, we found that eIF5A regulates iNOS levels and that eIF5A depletion as well as the inhibition of hypusination protects against glucose intolerance in inflammatory mouse models of diabetes. We observed that following knockdown of eIF5A expression, mice were resistant to beta cell loss and the development of hyperglycemia in the low-dose streptozotocin model of diabetes. The depletion of eIF5A led to impaired translation of iNOS-encoding mRNA within the islet. A role for the hypusine residue of eIF5A in islet inflammatory responses was suggested by the observation that inhibition of hypusine synthesis reduced translation of iNOS-encoding mRNA in rodent beta cells and human islets and protected mice against the development of glucose intolerance the low-dose streptozotocin model of diabetes. Further analysis revealed that hypusine is required in part for nuclear export of iNOS-encoding mRNA, a process that involved the export protein exportin1. These observations identify the hypusine modification of eIF5A as a potential therapeutic target for preserving islet function under inflammatory conditions.
在 1 型和 2 型糖尿病中,胰岛功能障碍部分是由于细胞因子介导的炎症引起的。普遍存在的真核翻译起始因子 5A(eIF5A)是唯一含有氨基酸hypusine 的蛋白质,它有助于产生促炎细胞因子。因此,我们研究了 eIF5A 是否参与导致糖尿病发生时胰岛功能障碍的炎症级联反应。本文所述,我们发现 eIF5A 调节 iNOS 水平,eIF5A 耗竭和 hypusination 抑制可保护炎性糖尿病小鼠模型中的葡萄糖不耐受。我们观察到 eIF5A 表达敲低后,小鼠对低剂量链脲佐菌素糖尿病模型中的β细胞丢失和高血糖发展具有抗性。在胰岛内,eIF5A 的 hypusine 残基缺失导致 iNOS 编码 mRNA 的翻译受损。eIF5A 的 hypusine 残基在胰岛炎症反应中的作用是通过观察到抑制 hypusine 合成可降低啮齿动物β细胞和人胰岛中 iNOS 编码 mRNA 的翻译并保护小鼠免受低剂量链脲佐菌素糖尿病模型中葡萄糖不耐受的发展来提示的。进一步的分析表明,hypusine 部分需要 iNOS 编码 mRNA 的核输出,这一过程涉及输出蛋白 exportin1。这些观察结果确定了 hypusine 修饰的 eIF5A 作为在炎症条件下保护胰岛功能的潜在治疗靶标。