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Iterative screening methodology enables isolation of strains with improved properties for a FACS-based screen and increased L-DOPA production

机译:迭代筛选方法可分离具有改进特性的菌株以用于基于FACS的筛选并提高L-DOPA的产量

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摘要

Optimizing microbial hosts for the large-scale production of valuable metabolites often requires multiple mutations and modifications to the host’s genome. We describe a three-round screen for increased L-DOPA production in S. cerevisiae using FACS enrichment of an enzyme-coupled biosensor for L-DOPA. Multiple rounds of screening were enabled by a single build of a barcoded in vitro transposon-mediated disruption library. New background strains for screening were built for each iteration using results from previous iterations. The same in vitro transposon-mediated disruption library was integrated by homologous recombination into new background strains in each round of screening. Compared with creating new transposon insertions in each round, this method takes less time and saves the cost of additional sequencing to characterize transposon insertion sites. In the first two rounds of screening, we identified deletions that improved biosensor compartmentalization and, consequently, improved our ability to screen for L-DOPA production. In a final round, we discovered that deletion of heme oxygenase (HMX1) increases total heme concentration and increases L-DOPA production, using dopamine measurement as a proxy. We further demonstrated that deleting HMX1 may represent a general strategy for P450 function improvement by improving activity of a second P450 enzyme, BM3, which performs a distinct reaction.
机译:优化微生物宿主以大规模生产有价值的代谢产物通常需要对宿主基因组进行多次突变和修饰。我们描述了使用FACS富集的L-DOPA酶联生物传感器的啤酒酵母中增加的L-DOPA生产的三轮筛选。通过条形码的体外转座子介导的破坏文库的单个构建,可以进行多轮筛选。使用先前迭代的结果为每次迭代构建用于筛选的新背景菌株。在每一轮筛选中,通过同源重组将相同的体外转座子介导的破坏文库整合到新的背景菌株中。与在每个回合中创建新的转座子插入相比,该方法花费的时间更少,并且节省了表征转座子插入位点的额外测序成本。在前两轮筛选中,我们鉴定了可改善生物传感器区室化的缺失,因此提高了我们筛选L-DOPA产量的能力。在最后一轮中,我们发现删除血红素加氧酶(HMX1)使用多巴胺测量作为代理可以增加总血红素浓度并增加L-DOPA的产生。我们进一步证明,删除HMX1可能代表通过改善第二种P450酶BM3(执行独特反应)的活性来改善P450功能的一般策略。

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