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Isolation of a non-genomic origin fluoroquinolone responsive regulatory element using a combinatorial bioengineering approach

机译:使用组合生物工程方法分离非基因组来源的氟喹诺酮类响应性调节元件

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摘要

Advances in chemical biology have led to selection of synthetic functional nucleic acids for in vivo applications. Discovery of synthetic nucleic acid regulatory elements has been a long-standing goal of chemical biologists. Availability of vast genome level genetic resources has motivated efforts for discovery and understanding of inducible synthetic genetic regulatory elements. Such elements can lead to custom-design of switches and sensors, oscillators, digital logic evaluators and cell–cell communicators. Here, we describe a simple, robust and universally applicable module for discovery of inducible gene regulatory elements. The distinguishing feature is the use of a toxic peptide as a reporter to suppress the background of unwanted bacterial recombinants. Using this strategy, we show that it is possible to isolate genetic elements of non-genomic origin which specifically get activated in the presence of DNA gyrase A inhibitors belonging to fluoroquinolone (FQ) group of chemicals. Further, using a system level genetic resource, we prove that the genetic regulation is exerted through histone-like nucleoid structuring (H-NS) repressor protein. Till date, there are no reports of in vivo selection of non-genomic origin inducible regulatory promoter like elements. Our strategy opens an uncharted route to discover inducible synthetic regulatory elements from biologically-inspired nucleic acid sequences.
机译:化学生物学的进步已导致选择用于体内应用的合成功能核酸​​。合成核酸调控元件的发现一直是化学生物学家的长期目标。巨大的基因组水平遗传资源的可利用性促使人们发现和理解可诱导的合成遗传调控元件。这些元素可能导致定制设计的开关和传感器,振荡器,数字逻辑评估器和单元通信器。在这里,我们描述了一个简单,健壮和普遍适用的模块,用于发现诱导型基因调控元件。显着特征是使用有毒肽作为报告基因来抑制不需要的细菌重组体的背景。使用此策略,我们表明可以分离出非基因组起源的遗传元件,这些遗传元件在属于氟喹诺酮(FQ)类化学品的DNA旋转酶A抑制剂存在下被特异性激活。此外,使用系统级遗传资源,我们证明了遗传调控是通过组蛋白样核苷结构(H-NS)阻遏蛋白发挥的。迄今为止,还没有关于体内选择非基因组来源的诱导型调控启动子样元件的报道。我们的策略开辟了一条未知的途径,可以从生物学启发的核酸序列中发现可诱导的合成调控元件。

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