Department of Pharmaceutical Sciences, College of Pharmacy , Oregon State University , Corvallis , Oregon 97331 , United States.
Undergraduate Honors College , Oregon State University , Corvallis , Oregon 97331 , United States.
ACS Synth Biol. 2020 Jan 17;9(1):63-75. doi: 10.1021/acssynbio.9b00334. Epub 2020 Jan 8.
Cyanobacteria are prolific producers of natural products, and genome mining has shown that many orphan biosynthetic gene clusters can be found in sequenced cyanobacterial genomes. New tools and methodologies are required to investigate these biosynthetic gene clusters, and here we present the use of sp. strain PCC 7120 as a host for combinatorial biosynthesis of natural products using the indolactam natural products (lyngbyatoxin A, pendolmycin, and teleocidin B-4) as a test case. We were able to successfully produce all three compounds using codon optimized genes from Actinobacteria. We also introduce a new plasmid backbone based on the native 7120 plasmid pCC7120ζ and show that production of teleocidin B-4 can be accomplished using a two-plasmid system, which can be introduced by coconjugation.
蓝藻是天然产物的丰富生产者,基因组挖掘表明,许多孤儿生物合成基因簇可以在测序的蓝藻基因组中找到。需要新的工具和方法来研究这些生物合成基因簇,在这里,我们使用 sp。菌株 PCC 7120 作为宿主,使用吲哚内酰胺天然产物(lyngbyatoxin A、pendolmycin 和 teleocidin B-4)作为测试案例,进行天然产物的组合生物合成。我们成功地使用来自放线菌的密码子优化基因生产了所有三种化合物。我们还介绍了一种基于天然 7120 质粒 pCC7120ζ的新质粒骨架,并表明使用双质粒系统可以完成 teleocidin B-4 的生产,该系统可以通过共conjugation 引入。