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The human insulin receptor mRNA contains a functional internal ribosome entry segment

机译:人胰岛素受体mRNA包含功能性内部核糖体进入片段

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Regulation of mRNA translation is an important mechanism determining the level of expression of proteins in eukaryotic cells. Translation is most commonly initiated by cap-dependent scanning, but many eukaryotic mRNAs contain internal ribosome entry segments (IRESs), providing an alternative means of initiation capable of independent regulation. Here, we show by using dicistronic luciferase reporter vectors that the 5′-UTR of the mRNA encoding human insulin receptor (hIR) contains a functional IRES. RNAi-mediated knockdown showed that the protein PTB was required for maximum IRES activity. Electrophoretic mobility shift assays confirmed that PTB1, PTB2 and nPTB, but not unr or PTB4, bound to hIR mRNA, and deletion mapping implicated a CCU motif 448 nt upstream of the initiator AUG in PTB binding. The IR-IRES was functional in a number of cell lines, and most active in cells of neuronal origin, as assessed by luciferase reporter assays. The IRES was more active in confluent than sub-confluent cells, but activity did not change during differentiation of 3T3-L1 fibroblasts to adipocytes. IRES activity was stimulated by insulin in sub-confluent cells. The IRES may function to maintain expression of IR protein in tissues such as the brain where mRNA translation by cap-dependent scanning is less effective.
机译:mRNA翻译的调节是决定真核细胞中蛋白质表达水平的重要机制。翻译通常是通过帽依赖性扫描来引发的,但是许多真核mRNA都包含内部核糖体进入片段(IRES),从而提供了能够独立调节的另一种引发方式。在这里,我们通过使用双顺反子荧光素酶报告载体显示编码人胰岛素受体(hIR)的mRNA的5'-UTR包含功能性IRES。 RNAi介导的敲低表明最大IRES活性需要蛋白PTB。电泳迁移率迁移测定法证实PTR1,PTB2和nPTB而非h1r或PTB4与hIR mRNA结合,并且缺失图谱表明在PTB结合中引发剂AUG上游的CCU基序448 nt。 IR-IRES在许多细胞系中均具有功能,并且在萤光素酶报告基因检测法评估中在神经元起源的细胞中最活跃。 IRES在融合细胞中比在亚融合细胞中更活跃,但是在3T3-L1成纤维细胞分化为脂肪细胞的过程中,活性没有改变。亚融合细胞中的胰岛素刺激了IRES活性。 IRES可能起到维持IR蛋白在组织(如大脑)中的表达的作用,其中通过帽依赖性扫描进行的mRNA翻译效果较差。

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