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Insulin-mediated suppression of apolipoprotein B mRNA translation requires the 5 ' UTR and is characterized by decreased binding of an insulin-sensitive 110-kDa 5 ' UTR RNA-binding protein

机译:胰岛素介导的载脂蛋白B mRNA翻译抑制需要5'UTR,其特征是胰岛素敏感性110 kDa 5'UTR RNA结合蛋白的结合减少

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摘要

Insulin has been shown to acutely regulate hepatic apolipoprotein B (apoB) secretion at both translational and post-translational levels; however, mechanisms of apoB mRNA translational control are largely unknown. Recent studies of apoB untranslated regions (UTRs) revealed a potentially important role for cis-trans interactions at the 5' and 3' UTRs. In the present paper, deletion constructs of the UTR regions of apoB revealed that the 5' UTR was necessary and sufficient for insulin to inhibit synthesis of apoB15. Metabolic radiolabeling and in vitro translation experiments in the presence of protease inhibitors confirmed that the effect of insulin on the apoB 5' UTR was translational in nature. Using the nondenaturing electrophoretic mobility shift assay (EMSA), protein-RNA complexes were detected binding to the apoB 5' and 3' UTRs. Denaturing EMSA identified a 110-kDa protein interacting at the 5' UTR. Nondenaturing EMSA determined that insulin altered binding of large protein complexes to the 5' UTR. Binding specificity was determined by competition with both specific and nonspecific competitors. Insulin treatment decreased binding of the 110-kDa protein to the 5' UTR as visualized by EMSA. Absence of insulin increased binding of this trans-acting factor to the 5' UTR by 2-fold. Analysis of the 3' UTR showed no significant insulin-mediated changes in binding of trans-acting factors. We thus propose the existence of a novel RNA-binding insulin-sensitive factor that binds to the 5' UTR and may regulate apoB mRNA translation. Perturbations in hepatic insulin signaling as observed in insulin-resistant states may alter cis-trans interactions at the 5' UTR, leading to alterations in the rate of apoB mRNA translation, thus contributing to apoB-lipoprotein overproduction.
机译:胰岛素已被证实可在翻译和翻译后水平上急性调节肝载脂蛋白B(apoB)的分泌。但是,apoB mRNA的翻译控制机制在很大程度上是未知的。最近对apoB非翻译区(UTR)的研究表明,在5'和3'UTR处顺式-反式相互作用具有潜在的重要作用。在本论文中,apoB的UTR区的缺失构建体显示5'UTR对于胰岛素抑制apoB15的合成是必需的和足够的。在蛋白酶抑制剂的存在下进行的代谢放射标记和体外翻译实验证实,胰岛素对apoB 5'UTR的作用本质上是翻译。使用非变性电泳迁移率变动分析(EMSA),检测到蛋白质-RNA复合物与apoB 5'和3'UTR的结合。变性EMSA鉴定出在5'UTR处相互作用的110 kDa蛋白。非变性EMSA确定胰岛素改变了大蛋白复合物与5'UTR的结合。结合特异性是由与特异性和非特异性竞争者的竞争决定的。 EMSA观察到,胰岛素治疗降低了110 kDa蛋白与5'UTR的结合。缺少胰岛素会使该反式作用因子与5'UTR的结合增加2倍。对3'UTR的分析显示,在反式作用因子的结合中胰岛素没有显着改变。因此,我们提出了一种新型的RNA结合胰岛素敏感因子,该因子与5'UTR结合并可能调节apoB mRNA的翻译。在胰岛素抵抗状态下观察到的肝胰岛素信号的扰动可能会改变5'UTR处的顺式-反式相互作用,从而导致apoB mRNA翻译速率的改变,从而导致apoB-脂蛋白的过度生产。

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