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首页> 外文期刊>Nucleic acids research >UNR translation can be driven by an IRES element that is negatively regulated by polypyrimidine tract binding protein
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UNR translation can be driven by an IRES element that is negatively regulated by polypyrimidine tract binding protein

机译:UNR翻译可由IREP元件驱动,IRES元件受聚嘧啶束结合蛋白负调控

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Upstream of N-ras (Unr) has been described as an internal initiation trans-acting factor (ITAF) in the cap-independent translation of some particular viral and cellular mRNAs. Two factors led us to hypothesize that the UNR 5′-untranslated region (5′-UTR) may contain an internal ribosome entry site (IRES). The first was the requirement for persisting Unr expression under conditions that correlate with cap-independent translation. The other was the observation that the primary UNR transcript contains a 447 nt long 5′-UTR including two upstream AUGs that may restrict translation initiation via cap-dependent ribosome scanning. Here we report that the UNR 5′-UTR allows IRES-dependent translation, as revealed by a dicistronic reporter assay. Various controls ruled out the contribution of leaky scanning, cryptic promoter sequences or RNA processing events to the ability of the UNR 5′-UTR to mediate internal initiation of translation. Ultraviolet cross-linking analysis and RNA affinity chromatography revealed the binding of polypyrimidine tract binding protein (PTB) to the UNR IRES, requiring a pyrimidine-rich region (nucleotides 335–355). Whereas overexpression of PTB in several cell lines inhibited UNR IRES activity and UNR protein expression, depletion of endogenous PTB using RNAi increased UNR IRES activity. Moreover, a mutant version of the UNR IRES lacking the PTB binding site was more efficient at directing IRES-mediated translation. In conclusion, our results demonstrate that translation of the ITAF Unr can itself be regulated by an IRES that is downregulated by PTB.
机译:N-ras(Unr)的上游已被描述为某些特定病毒和细胞mRNA的不依赖于帽的翻译中的内部起始反式作用因子(ITAF)。有两个因素使我们假设UNR 5'非翻译区(5'-UTR)可能包含内部核糖体进入位点(IRES)。首先是在与帽独立翻译相关的条件下保持Unr表达的要求。另一个是观察到的主要UNR转录本包含一个447 nt长的5'-UTR,其中包括两个上游AUG,这些AUG可能会通过帽依赖性核糖体扫描来限制翻译起始。在这里,我们报道,如双顺反子报告基因测定所揭示的,UNR 5'-UTR允许IRES依赖性翻译。各种对照排除了漏扫描,隐秘启动子序列或RNA处理事件对UNR 5'-UTR介导内部翻译起始的能力的影响。紫外线交联分析和RNA亲和层析揭示了聚嘧啶束结合蛋白(PTB)与UNR IRES的结合,需要一个富含嘧啶的区域(核苷酸335-355)。尽管在几种细胞系中PTB的过表达抑制了UNR IRES活性和UNR蛋白表达,但使用RNAi消耗内源性PTB却增加了UNR IRES活性。此外,缺少PTB结合位点的UNR IRES的突变形式在指导IRES介导的翻译中更有效。总之,我们的结果表明,ITAF Unr的翻译本身可以由PTB下调的IRES进行调节。

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