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Rapid evolution of regulatory element libraries for tunable transcriptional and translational control of gene expression

机译:调节元件库的快速发展,可调节基因表达的转录和翻译控制

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Engineering cell factories for producing biofuels and pharmaceuticals has spurred great interests to develop rapid and efficient synthetic biology tools customized for modular pathway engineering. Along the way, combinatorial gene expression control through modification of regulatory element offered tremendous opportunity for fine-tuning gene expression and generating digital-like genetic circuits. In this report, we present an efficient evolutionary approach to build a range of regulatory control elements. The reported method allows for rapid construction of promoter, 5′UTR, terminator and trans -activating RNA libraries. Synthetic overlapping oligos with high portion of degenerate nucleotides flanking the regulatory element could be efficiently assembled to a vector expressing fluorescence reporter. This approach combines high mutation rate of the synthetic DNA with the high assembly efficiency of Gibson Mix. Our constructed library demonstrates broad range of transcriptional or translational gene expression dynamics. Specifically, both the promoter library and 5′UTR library exhibits gene expression dynamics spanning across three order of magnitude. The terminator library and trans -activating RNA library displays relatively narrowed gene expression pattern. The reported study provides a versatile toolbox for rapidly constructing a large family of prokaryotic regulatory elements. These libraries also facilitate the implementation of combinatorial pathway engineering principles and the engineering of more efficient microbial cell factory for various biomanufacturing applications.
机译:用于生产生物燃料和药物的工程细胞工厂激发了极大的兴趣,以开发针对模块化途径工程定制的快速,高效的合成生物学工具。在此过程中,通过调节调控元件来控制组合基因表达为微调基因表达和产生类似数字的遗传电路提供了巨大的机会。在本报告中,我们提出了一种有效的进化方法来构建一系列监管控制要素。报道的方法允许快速构建启动子,5'UTR,终止子和反式激活RNA文库。具有高比例的简并核苷酸侧翼调控元件的合成的重叠寡核苷酸可以有效地组装到表达荧光报告基因的载体上。这种方法将合成DNA的高突变率与Gibson Mix的高组装效率结合在一起。我们构建的文库展示了广泛的转录或翻译基因表达动力学。具体地,启动子文库和5'UTR文库均展现跨越三个数量级的基因表达动力学。终止子文库和反式激活RNA文库显示相对狭窄的基因表达模式。报道的研究为快速构建大家族的原核调节元件提供了一种多功能的工具箱。这些库还促进了组合途径工程原理的实施以及各种生物制造应用中效率更高的微生物细胞工厂的工程设计。

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