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Synthetic biology and metabolic engineering of actinomycetes for natural product discovery

机译:用于天然产品发现的放线菌的合成生物学和代谢工程

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Actinomycetes are one of the most valuable sources of natural products with industrial and medicinal importance. After more than half a century of exploitation, it has become increasingly challenging to find novel natural products with useful properties as the same known compounds are often repeatedly re-discovered when using traditional approaches. Modern genome mining approaches have led to the discovery of new biosynthetic gene clusters, thus indicating that actinomycetes still harbor a huge unexploited potential to produce novel natural products. In recent years, innovative synthetic biology and metabolic engineering tools have greatly accelerated the discovery of new natural products and the engineering of actinomycetes. In the first part of this review, we outline the successful application of metabolic engineering to optimize natural product production, focusing on the use of multi-omics data, genome-scale metabolic models, rational approaches to balance precursor pools, and the engineering of regulatory genes and regulatory elements. In the second part, we summarize the recent advances of synthetic biology for actinomycetal metabolic engineering including cluster assembly, cloning and expression, CRISPR/Cas9 technologies, and chassis strain development for natural product overproduction and discovery. Finally, we describe new advances in reprogramming biosynthetic pathways through polyketide synthase and non-ribosomal peptide synthetase engineering. These new developments are expected to revitalize discovery and development of new natural products with medicinal and other industrial applications.
机译:放线菌是具有工业和药用的最有价值的天然产品来源之一。经过超过半个世纪的剥削,发现在使用传统方法时通常反复地重复地重复地重复地重复地重新发现,越来越具有挑战性。现代基因组采矿方法导致了新的生物合成基因簇的发现,从而表明放线菌仍然涉及生产新型天然产物的巨大未爆发的潜力。近年来,创新的合成生物学和代谢工程工具极大地加速了新的天然产品和放线菌的工程。在本综述中,我们概述了代谢工程的成功应用,以优化自然产品生产,重点使用多OMICS数据,基因组代谢模型,合理的方法来平衡前体池,以及监管工程基因和监管要素。在第二部分中,我们总结了综合生物学的综合生物学的进展,包括集群组装,克隆和表达,CRISPR / CAS9技术以及用于天然产品生产过量生产和发现的底盘应变开发。最后,我们描述了通过聚酮合成酶和非核糖体肽合成酶工程重编程生物合成途径的新进步。预计这些新的发展将振兴具有药用和其他工业应用的新天然产品的发现和开发。

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