首页> 外文期刊>Nucleic Acids Research >A modular strategy for engineering orthogonal chimeric RNA transcription regulators
【24h】

A modular strategy for engineering orthogonal chimeric RNA transcription regulators

机译:工程正交嵌合RNA转录调控因子的模块化策略

获取原文
获取原文并翻译 | 示例
           

摘要

Antisense RNA transcription attenuators are a key component of the synthetic biology toolbox, with their ability to serve as building blocks for both signal integration logic circuits and transcriptional cascades. However, a central challenge to building more sophisticated RNA genetic circuitry is creating larger families of orthogonal attenuators that function independently of each other. Here, we overcome this challenge by developing a modular strategy to create chimeric fusions between the engineered transcriptional attenuator from plasmid pT181 and natural antisense RNA translational regulators. Using in vivo gene expression assays in Escherichia coli, we demonstrate our ability to create chimeric attenuators by fusing sequences from five different translational regulators. Mutagenesis of these functional attenuators allowed us to create a total of 11 new chimeric attenutaors. A comprehensive orthogonality test of these culminated in a 7 x 7 matrix of mutually orthogonal regulators. A comparison between all chimeras tested led to design principles that will facilitate further engineering of orthogonal RNA transcription regulators, and may help elucidate general principles of non-coding RNA regulation. We anticipate that our strategy will accelerate the development of even larger families of orthogonal RNA transcription regulators, and thus create breakthroughs in our ability to construct increasingly sophisticated RNA genetic circuitry.
机译:反义RNA转录衰减子是合成生物学工具箱的关键组成部分,具有充当信号整合逻辑电路和转录级联反应的基础。但是,构建更复杂的RNA遗传电路的主要挑战是创建相互独立发挥作用的更大系列的正交衰减器。在这里,我们通过开发一种模块化策略克服了这一挑战,该策略可在质粒pT181的工程转录减毒剂与天然反义RNA翻译调节剂之间建立嵌合融合。使用大肠杆菌中的体内基因表达测定法,我们证明了通过融合来自五个不同翻译调节子的序列来创建嵌合衰减子的能力。这些功能衰减子的诱变使我们能够创建总共11个新的嵌合衰减子。这些器件的全面正交测试最终达到了相互正交的调节器的7 x 7矩阵。在所有测试的嵌合体之间进行比较,得出了设计原理,该原理将有助于进一步设计正交RNA转录调节剂,并可能有助于阐明非编码RNA调节的一般原理。我们预计,我们的策略将加快甚至更大的正交RNA转录调节剂家族的开发,从而在我们构建日益复杂的RNA遗传电路的能力方面取得突破。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号