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SINEUPs: A new class of natural and synthetic antisense long non-coding RNAs that activate translation

机译:SINEUPs:一类新的天然和合成反义长非编码RNA,可激活翻译

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摘要

Over the past 10years, it has emerged that pervasive transcription in mammalian genomes has a tremendous impact on several biological functions. Most of transcribed RNAs are lncRNAs and repetitive elements. In this review, we will detail the discovery of a new functional class of natural and synthetic antisense lncRNAs that stimulate translation of sense mRNAs. These molecules have been named SINEUPs since their function requires the activity of an embedded inverted SINEB2 sequence to UP-regulate translation. Natural SINEUPs suggest that embedded Transposable Elements may represent functional domains in long non-coding RNAs. Synthetic SINEUPs may be designed by targeting the antisense sequence to the mRNA of choice representing the first scalable tool to increase protein synthesis of potentially any gene of interest. We will discuss potential applications of SINEUP technology in the field of molecular biology experiments, in protein manufacturing as well as in therapy of haploinsufficiencies.
机译:在过去的十年中,已经发现哺乳动物基因组中的普遍转录对几种生物学功能具有巨大影响。转录的大多数RNA是lncRNA和重复元件。在这篇综述中,我们将详细介绍刺激有义mRNA翻译的天然和合成反义lncRNA新功能类别的发现。这些分子被称为SINEUPs,因为它们的功能需要嵌入的反向SINEB2序列具有激活UP调节翻译的功能。天然SINEUPs暗示,嵌入式转座因子可能代表长的非编码RNA中的功能域。可以通过将反义序列靶向所选的代表第一可扩展工具的mRNA来设计合成的SINEUP,以增加潜在的任何目的基因的蛋白质合成。我们将讨论SINEUP技术在分子生物学实验领域,蛋白质制造以及单倍剂量不足治疗中的潜在应用。

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