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Improving fold activation of small transcription activating RNAs (STARs) with rational RNA engineering strategies

机译:通过合理的RNA工程策略改善小转录激活RNA(STAR)的折叠激活

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摘要

Regulatory RNAs have become integral components of the synthetic biology and bioengineering toolbox for controlling gene expression. We recently expanded this toolbox by creating small transcription activating RNAs (STARs) that act by disrupting the formation of a target transcriptional terminator hairpin placed upstream of a gene. While STARs are a promising addition to the repertoire of RNA regulators, much work remains to be done to optimize the fold activation of these systems. Here we apply rational RNA engineering strategies to improve the fold activation of two STAR regulators. We demonstrate that a combination of promoter strength tuning and multiple RNA engineering strategies can improve fold activation from 5.4-fold to 13.4-fold for a STAR regulator derived from the pbuE riboswitch terminator. We then validate the generality of our approach and show that these same strategies improve fold activation from 2.1-fold to 14.6-fold for an unrelated STAR regulator, opening the door to creating a range of additional STARs to use in a broad array of biotechnologies. We also establish that the optimizations preserve the orthogonality of these STARs between themselves and a set of RNA transcriptional repressors, enabling these optimized STARs to be used in sophisticated circuits. Biotechnol. Bioeng. 2016;113: 216-225. (c) 2015 Wiley Periodicals, Inc.
机译:调节性RNA已成为控制基因表达的合成生物学和生物工程工具箱的组成部分。我们最近通过创建小的转录激活RNA(STAR)扩展了该工具箱,这些转录RNA破坏了位于基因上游的目标转录终止子发夹的形成。尽管STARs是RNA调节剂的一个有前途的补充,但要优化这些系统的折叠激活,还有许多工作要做。在这里,我们应用合理的RNA工程策略来改善两个STAR调节子的折叠激活。我们证明,启动子强度调节和多种RNA工程策略的组合可以将衍生自pbuE核糖开关终止子的STAR调节子的折叠活化从5.4倍提高到13.4倍。然后,我们验证了我们方法的通用性,并表明,对于不相关的STAR调节器,这些相同的策略也可以将折叠激活从2.1倍提高到14.6倍,从而为创建一系列可广泛用于多种生物技术的STAR打开了大门。我们还建立了优化措施,以保持这些STAR与一组RNA转录阻遏物之间的正交性,从而使这些优化的STAR可以用于复杂的电路中。生物技术。生恩2016; 113:216-225。 (c)2015年威利期刊有限公司

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