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Terminator Operon Reporter : Combining a transcription termination switch with reporter technology for improved gene synthesis and synthetic biology applications

机译:Terminator Operon Reporter:将转录终止开关与报告基因技术相结合,可改善基因合成和合成生物学应用

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摘要

Synthetic biology is characterized by the development of novel and powerful DNA fabrication methods and by the application of engineering principles to biology. The current study describes Terminator Operon Reporter (TOR), a new gene assembly technology based on the conditional activation of a reporter gene in response to sequence errors occurring at the assembly stage of the synthetic element. These errors are monitored by a transcription terminator that is placed between the synthetic gene and reporter gene. Switching of this terminator between active and inactive states dictates the transcription status of the downstream reporter gene to provide a rapid and facile readout of the accuracy of synthetic assembly. Designed specifically and uniquely for the synthesis of protein coding genes in bacteria, TOR allows the rapid and cost-effective fabrication of synthetic constructs by employing oligonucleotides at the most basic purification level (desalted) and without the need for costly and time-consuming post-synthesis correction methods. Thus, TOR streamlines gene assembly approaches, which are central to the future development of synthetic biology.
机译:合成生物学的特点是开发了新颖而强大的DNA制造方法,并将工程原理应用于生物学。当前的研究描述了Terminator Operon Reporter(TOR),这是一种新的基因组装技术,其基于报告基因的条件激活,以响应合成元件组装阶段出现的序列错误。这些错误由位于合成基因和报道基因之间的转录终止子监测。该终止子在活跃状态和非活跃状态之间的转换决定了下游报道基因的转录状态,从而提供了快速而简便的合成装配精度读数。 TOR是专门为细菌中蛋白质编码基因的合成而专门设计的,通过使用最基本的纯化水平(脱盐)的寡核苷酸,无需花费昂贵且费时的后期处理,即可快速,经济高效地生产合成构建体。综合校正方法。因此,TOR简化了基因组装方法,这对于合成生物学的未来发展至关重要。

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