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首页> 外文期刊>Journal of molecular cell biology >IRES-mediated cap-independent translation, a path leading to hidden proteome
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IRES-mediated cap-independent translation, a path leading to hidden proteome

机译:IRES介导的不依赖帽的翻译,导致隐藏蛋白质组的途径

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Most eukaryotic mRNAs are translated in a cap-dependent fashion; however, under stress conditions, the cap-independent translation driven by internal ribosomal entry sites (IRESs) can serve as an alternative mechanism for protein production. Many IRESs have been discovered from viral or cellular mRNAs to promote ribosome assembly and initiate translation by recruiting different trans -acting factors. Although the mechanisms of translation initiation driven by viral IRESs are relatively well understood, the existence of cellular IRESs is still under debate due to the limitations of translation reporter systems used to assay IRES activities. A recent screen identified ?1000 putative IRESs from viral and human mRNAs, expanding the scope and mechanism for cap-independent translation. Additionally, a large number of circular RNAs lacking free ends were identified in eukaryotic cells, many of which are found to be translated through IRESs. These findings suggest that IRESs may play a previously unappreciated role in driving translation of the new type of mRNA, implying a hidden proteome produced from cap-independent translation.
机译:大多数真核mRNA以帽依赖的方式翻译。但是,在压力条件下,内部核糖体进入位点(IRESs)驱动的非帽依赖性翻译可以作为蛋白质生产的另一种机制。已经从病毒或细胞mRNA中发现了许多IRES以促进核糖体装配并通过募集不同的反式作用因子来启动翻译。尽管由病毒IRES驱动的翻译起始机制被相对很好地理解,但是由于用于分析IRES活性的翻译报告系统的局限性,细胞IRES的存在仍在争论中。最近的筛选从病毒和人类mRNA中鉴定出> 1000个假定的IRES,从而扩大了与帽无关的翻译的范围和机制。另外,在真核细胞中鉴定出大量缺乏自由端的环状RNA,发现许多通过IRES翻译。这些发现表明,IRES可能在驱动新型mRNA的翻译中发挥以前未曾意识到的作用,这暗示了由不依赖于帽的翻译产生的隐藏蛋白质组。

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