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鱼腥藻属菌株PCC 7120作为蓝藻天然产物异源表达宿主的评估:石房蛤毒素A的生产。

Assessment of Anabaena sp. Strain PCC 7120 as a Heterologous Expression Host for Cyanobacterial Natural Products: Production of Lyngbyatoxin A.

作者信息

Videau Patrick, Wells Kaitlyn N, Singh Arun J, Gerwick William H, Philmus Benjamin

机构信息

Center for Marine Biotechnology and Biomedicine, Scripps Institution of Oceanography and Skaggs School of Pharmacy and Pharmaceutical Sciences, University of California, San Diego , La Jolla, California 92093, United States.

出版信息

ACS Synth Biol. 2016 Sep 16;5(9):978-88. doi: 10.1021/acssynbio.6b00038. Epub 2016 Jun 1.

Abstract

Cyanobacteria are well-known producers of natural products of highly varied structure and biological properties. However, the long doubling times, difficulty in establishing genetic methods for marine cyanobacteria, and low compound titers have hindered research into the biosynthesis of their secondary metabolites. While a few attempts to heterologously express cyanobacterial natural products have occurred, the results have been of varied success. Here, we report the first steps in developing the model freshwater cyanobacterium Anabaena sp. strain PCC 7120 (Anabaena 7120) as a general heterologous expression host for cyanobacterial secondary metabolites. We show that Anabaena 7120 can heterologously synthesize lyngbyatoxin A in yields comparable to those of the native producer, Moorea producens, and detail the design and use of replicative plasmids for compound production. We also demonstrate that Anabaena 7120 recognizes promoters from various biosynthetic gene clusters from both free-living and obligate symbiotic marine cyanobacteria. Through simple genetic manipulations, the titer of lyngbyatoxin A can be improved up to 13-fold. The development of Anabaena 7120 as a general heterologous expression host enables investigation of interesting cyanobacterial biosynthetic reactions and genetic engineering of their biosynthetic pathways.

摘要

蓝藻细菌是结构和生物学特性高度多样的天然产物的著名生产者。然而,较长的倍增时间、难以建立海洋蓝藻细菌的遗传方法以及较低的化合物滴度阻碍了对其次级代谢产物生物合成的研究。虽然已经有一些尝试异源表达蓝藻细菌天然产物,但结果成败不一。在此,我们报告了将模式淡水蓝藻细菌鱼腥藻属菌株PCC 7120(鱼腥藻7120)开发为蓝藻细菌次级代谢产物通用异源表达宿主的初步步骤。我们表明,鱼腥藻7120能够异源合成岩沙海葵毒素A,产量与天然生产者多摩产额藻相当,并详细介绍了用于化合物生产的复制质粒的设计和使用。我们还证明,鱼腥藻7120能够识别来自自由生活和专性共生海洋蓝藻细菌的各种生物合成基因簇的启动子。通过简单的基因操作,岩沙海葵毒素A的滴度可提高至13倍。将鱼腥藻7120开发为通用异源表达宿主能够研究有趣的蓝藻细菌生物合成反应及其生物合成途径的基因工程。

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