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Amicrobial biomanufacturing platform for natural and semisynthetic opioids

机译:天然和半合成阿片类药物的微生物生物制造平台

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Opiates and related molecules are medically essential, but their production via field cultivation of opium poppy Papaver somniferum leads to supply inefficiencies and insecurity. As an alternative production strategy, we developed baker’s yeast Saccharomyces cerevisiae as a microbial host for the transformation of opiates. Yeast strains engineered to express heterologous genes from P. somniferum and bacterium Pseudomonas putida M10 convert thebaine to codeine, morphine, hydromorphone, hydrocodone and oxycodone. We discovered a new biosynthetic branch to neopine and neomorphine, which diverted pathway flux from morphine and other target products. We optimized strain titer and specificity by titrating gene copy number, enhancing cosubstrate supply, applying a spatial engineering strategy and performing high-density fermentation, which resulted in total opioid titers up to 131 mg/l. This work is an important step toward total biosynthesis of valuable benzylisoquinoline alkaloid drug molecules and demonstrates the potential for developing a sustainable and secure yeast biomanufacturing platform for opioids.
机译:阿片类药物和相关分子在医学上是必不可少的,但是它们通过罂粟罂粟的野外种植生产导致供应效率低下和不安全。作为替代生产策略,我们开发了面包酵母啤酒糖酵母作为阿片剂转化的微生物宿主。经过工程改造以表达来自体育假单胞菌和恶臭假单胞菌M10的异源基因的酵母菌株将蒂巴因转化为可待因,吗啡,氢吗啡酮,氢可酮和羟考酮。我们发现了一个新的生物合成分支,该新分支指向新陈代谢和新吗啡,从而使吗啡和其他目标产品的通量转移。我们通过滴定基因拷贝数,增强共底物供应,应用空间工程策略和进行高密度发酵来优化菌株效价和特异性,从而使阿片样物质的总效价高达131 mg / l。这项工作是迈向完全生物合成有价值的苄基异喹啉生物碱药物分子的重要一步,并展示了开发可持续且安全的阿片类酵母生物制造平台的潜力。

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