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基因组工程与修饰在抗生素合成生物学中的应用。

Genome Engineering and Modification Toward Synthetic Biology for the Production of Antibiotics.

机构信息

Zhongnan Hospital, and Key Laboratory of Combinatorial Biosynthesis and Drug Discovery, Ministry of Education, School of Pharmaceutical Sciences, Wuhan University, Wuhan, Hubei, 430071, China.

Taihe Hospital, Hubei University of Medicine, Shiyan, Hubei, China.

出版信息

Med Res Rev. 2018 Jan;38(1):229-260. doi: 10.1002/med.21439. Epub 2017 Mar 15.

Abstract

Antibiotic production is often governed by large gene clusters composed of genes related to antibiotic scaffold synthesis, tailoring, regulation, and resistance. With the expansion of genome sequencing, a considerable number of antibiotic gene clusters has been isolated and characterized. The emerging genome engineering techniques make it possible towards more efficient engineering of antibiotics. In addition to genomic editing, multiple synthetic biology approaches have been developed for the exploration and improvement of antibiotic natural products. Here, we review the progress in the development of these genome editing techniques used to engineer new antibiotics, focusing on three aspects of genome engineering: direct cloning of large genomic fragments, genome engineering of gene clusters, and regulation of gene cluster expression. This review will not only summarize the current uses of genomic engineering techniques for cloning and assembly of antibiotic gene clusters or for altering antibiotic synthetic pathways but will also provide perspectives on the future directions of rebuilding biological systems for the design of novel antibiotics.

摘要

抗生素的生产通常由大型基因簇控制,这些基因簇包含与抗生素支架合成、修饰、调控和抗性相关的基因。随着基因组测序的扩展,大量的抗生素基因簇已经被分离和表征。新兴的基因组工程技术使得抗生素的工程化更加高效。除了基因组编辑,还开发了多种合成生物学方法来探索和改进抗生素天然产物。在这里,我们综述了用于工程新抗生素的这些基因组编辑技术的发展进展,重点关注基因组工程的三个方面:大片段基因组的直接克隆、基因簇的基因组工程以及基因簇表达的调控。这篇综述不仅总结了基因组工程技术在抗生素基因簇的克隆和组装或改变抗生素合成途径方面的当前用途,还对用于设计新型抗生素的重建生物系统的未来方向提供了一些见解。

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