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A genome-wide approach for identification and characterisation of metabolite-inducible systems

机译:一种用于鉴定和表征代谢物诱导系统的基因组方法

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Inducible gene expression systems are vital tools for the advancement of synthetic biology. Their application as genetically encoded biosensors has the potential to contribute to diagnostics and to revolutionise the field of microbial cell factory development. Currently, the number of compounds of biological interest by far exceeds the number of available biosensors. Here, we address this limitation by developing a generic genome-wide approach to identify transcription factor-based inducible gene expression systems. We construct and validate 15 functional biosensors, provide a characterisation workflow to facilitate forward engineering efforts, exemplify their broad-host-range applicability, and demonstrate their utility in enzyme screening. Previously uncharacterised interactions between sensors and compounds of biological relevance are identified by employing the largest reported library of metabolite-responsive biosensors in an automated high-throughput screen. With the rapidly growing genomic data these innovative capabilities offer a platform to vastly increase the number of biologically detectable molecules.
机译:诱导基因表达系统是用于促进合成生物学的重要工具。它们作为遗传编码的生物传感器的应用有可能有助于诊断和彻底改变微生物细胞厂发展领域。目前,远远超过可用生物传感器的生物利益化合物的数量。在这里,我们通过开发通用基因组宽方法来鉴定基于转录因子的诱导基因表达系统来解决这种限制。我们构建和验证了15个功能生物传感器,提供了表征工作流程,以促进前瞻性工程工作,举例说明其广泛的宿主范围适用性,并证明其在酶筛选中的效用。以前通过在自动化高通量屏幕中使用最大报道的代谢物响应性生物传感器文库来鉴定传感器和生物相关化合物之间的特征化的相互作用。随着快速增长的基因组数据,这些创新能力提供了一个平台,以大大增加生物学可检测分子的数量。

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