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Development of transcription factor-based designer macrolide biosensors for metabolic engineering and synthetic biology

机译:基于转录因子的设计者大环内酯生物传感器的开发用于代谢工程和合成生物学

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摘要

Macrolides are a large group of natural products that display broad and potent biological activities and are biosynthesized by type I polyketide synthases (PKSs) and associated enzymatic machinery. There is an urgent need to access macrolides and unnatural macrolide derivatives for drug discovery, drug manufacture, and probe development. Typically, efforts to engineer the biosynthesis of macrolides and macrolide analogues in various microbial hosts are hampered by the complexity of macrolide biosynthetic pathways and our limited ability to rationally reprogram type I PKSs and post-PKS machinery. High-throughput approaches based on synthetic biology and directed evolution could overcome this problem by testing the function of large libraries of variants. Yet, methods that can identify mutant enzymes, pathways, and strains that produce the desired macrolide target are not generally available. Here we show that the promiscuous macrolide sensing transcription factor MphR is a powerful platform for engineering variants with tailored properties. We identified variants that displayed improved sensitivity towards erythromycin, tailored the inducer specificity, and significantly improved sensitivity to macrolides that were very poor inducers of the wild-type MphR biosensor. Designer macrolide biosensors should find broad utility and enable applications related to high-throughput synthetic biology and directed evolution of macrolide biosynthesis.
机译:大环内酯类是一大类天然产物,它们显示出广泛而有效的生物学活性,并通过I型聚酮化合物合酶(PKS)和相关的酶促机制进行生物合成。迫切需要获得大环内酯和非天然大环内酯衍生物用于药物发现,药物生产和探针开发。通常,大环内酯生物合成途径的复杂性以及我们合理地重新编程I型PKS和后PKS机械的能力有限,阻碍了在各种微生物宿主中工程化大环内酯和大环内酯类似物的生物合成的努力。基于合成生物学和定向进化的高通量方法可以通过测试大型变体文库的功能来克服此问题。然而,通常不能鉴定出产生所需大环内酯靶标的突变酶,途径和菌株的方法。在这里,我们表明,混杂的大环内酯类传感转录因子MphR是具有定制属性的工程变体的强大平台。我们鉴定出对红霉素显示出更高的敏感性,定制了诱导剂特异性的变异体,并显着提高了对大环内酯类药物的敏感性,而大环内酯类药物是野生型MphR生物传感器的非常差的诱导剂。设计者大环内酯生物传感器应找到广泛的用途,并使与高通量合成生物学和大环内酯生物合成的定向进化有关的应用成为可能。

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