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内部启动子及其对埃坡霉素生产操纵子基因转录的影响 。 (你提供的原文似乎不完整,最后的in后面缺少具体内容)

Internal Promoters and Their Effects on the Transcription of Operon Genes for Epothilone Production in .

作者信息

Wang Ye, Yue Xin-Jing, Yuan Shu-Fei, Hong Yu, Hu Wei-Feng, Li Yue-Zhong

机构信息

State Key Laboratory of Microbial Technology, Institute of Microbial Technology, Shandong University, Qingdao, China.

出版信息

Front Bioeng Biotechnol. 2021 Oct 27;9:758561. doi: 10.3389/fbioe.2021.758561. eCollection 2021.

Abstract

The biosynthetic genes for secondary metabolites are often clustered into giant operons with no transcription terminator before the end. The long transcripts are frangible and the transcription efficiency declines along with the process. Internal promoters might occur in operons to coordinate the transcription of individual genes, but their effects on the transcription of operon genes and the yield of metabolites have been less investigated. Epothilones are a kind of antitumor polyketides synthesized by seven multifunctional enzymes encoded by a 56-kb operon. In this study, we identified multiple internal promoters in the epothilone operon. We performed CRISPR-dCas9-mediated transcription activation of internal promoters, combined activation of different promoters, and activation in different epothilone-producing strains. We found that activation of internal promoters in the operon was able to promote the gene transcription, but the activation efficiency was distinct from the activation of separate promoters. The transcription of genes in the operon was influenced by not only the starting promoter but also internal promoters of the operon; internal promoters affected the transcription of the following and neighboring upstream/downstream genes. Multiple interferences between internal promoters thus changed the transcriptional profile of operon genes and the production of epothilones. Better activation efficiency for the gene transcription and the epothilone production was obtained in the low epothilone-producing strains. Our results highlight that interactions between promoters in the operon are critical for the gene transcription and the metabolite production efficiency.

摘要

次生代谢物的生物合成基因通常聚集成巨大的操纵子,末端之前没有转录终止子。长转录本易碎,转录效率随过程下降。操纵子中可能会出现内部启动子来协调单个基因的转录,但它们对操纵子基因转录和代谢物产量的影响研究较少。埃坡霉素是一类由一个56 kb操纵子编码的七种多功能酶合成的抗肿瘤聚酮化合物。在本研究中,我们在埃坡霉素操纵子中鉴定出多个内部启动子。我们进行了CRISPR-dCas9介导的内部启动子转录激活、不同启动子的联合激活以及在不同埃坡霉素生产菌株中的激活。我们发现操纵子中内部启动子的激活能够促进基因转录,但激活效率与单独启动子的激活不同。操纵子中基因的转录不仅受起始启动子的影响,还受操纵子内部启动子的影响;内部启动子影响后续及相邻上游/下游基因的转录。因此,内部启动子之间的多重干扰改变了操纵子基因的转录谱和埃坡霉素的产生。在低埃坡霉素生产菌株中获得了更好的基因转录激活效率和埃坡霉素产量。我们的结果突出表明,操纵子中启动子之间的相互作用对于基因转录和代谢物生产效率至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4ac/8579030/1a07d37931a0/fbioe-09-758561-g001.jpg

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