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Synthetic biology-inspired strategies and tools for engineering of microbial natural product biosynthetic pathways

机译:用于微生物天然产物生物合成途径的工程的合成生物学启发策略和工具

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摘要

Microbial-derived natural products (NPs) and their derivative products are of great importance and used widely in many fields, especially in pharmaceutical industries. However, there is an immediate need to establish innovative approaches, strategies, and techniques to discover new NPs with novel or enhanced biological properties, due to the less productivity and higher cost on traditional drug discovery pipelines from natural bioresources. Revealing of untapped microbial cryptic biosynthetic gene clusters (BGCs) using DNA sequencing technology and bioinformatics tools makes genome mining possible for NP discovery from microorganisms. Meanwhile, new approaches and strategies in the area of synthetic biology offer great potentials for generation of new NPs by engineering or creating synthetic systems with improved and desired functions. Development of approaches, strategies and tools in synthetic biology can facilitate not only exploration and enhancement in supply, and also in the structural diversification of NPs. Here, we discussed recent advances in synthetic biologyinspired strategies, including bioinformatics and genetic engineering tools and approaches for identification, cloning, editing/refactoring of candidate biosynthetic pathways, construction of heterologous expression hosts, fitness optimization between target pathways and hosts and detection of NP production.
机译:微生物衍生的天然产品(NPS)及其衍生物产品具有重要的意义,在许多领域中广泛使用,特别是在制药行业。然而,由于来自自然生物源的传统药物发现管道的生产率较低和更高的成本,立即需要建立创新的方法,策略和技术,以发现具有新颖或增强的生物特性。利用DNA测序技术揭示未缺陷的微生物隐秘性生物合成基因簇(BGCs)和生物信息学工具使得基因组开采可以从微生物中发现NP发现。同时,合成生物学领域的新方法和策略通过工程或创造具有改进和所需功能的合成系统来产生新的NPS的巨大潜力。在合成生物学中的方法,策略和工具的发展可以不仅可以促进供应的探索和增强,以及在NPS的结构多样化中。在这里,我们讨论了综合生物学透明策略的最新进展,包括生物信息学和遗传工程工具以及候选生物合成途径的鉴定,克隆,编辑/重构,异源表达宿主的构建,靶途径与宿主之间的健身优化以及NP生产的检测和检测的方法。

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