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Engineered Fluorine Metabolism and Fluoropolymer Production in Living Cells

机译:生物细胞的工程化氟代谢和含氟聚合物产生

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摘要

Fluorine has become an important element for the design of synthetic molecules for use in medicine, agriculture, and materials. Despite the many advantages provided by fluorine for tuning key molecular properties, it is rarely found in natural metabolism. We seek to expand the molecular space available for discovery through the development of new biosynthetic strategies that cross synthetic with natural compounds. Towards this goal, we engineered a microbial host for organofluorine metabolism and show that we can achieve the production of the fluorinated diketide 2-fluoro-3-hydroxybutyrate at approximately 50% yield. This fluorinated diketide can be used as a monomer in vivo to produce fluorinated poly(hydroxyalkanoate) (PHA) bioplastics with fluorine substitutions ranging from around 5-15%. This system provides a platform to produce mm flux through the key fluoromalonyl coenzyme A (CoA) building block, thereby offering the potential to generate a broad range of fluorinated small-molecule targets in living cells.
机译:氟已成为用于医学,农业和材料的合成分子的重要因素。尽管氟提供了许多优点,用于调节关键分子特性,但很少在天然代谢中发现。我们寻求通过开发与自然化合物交叉合成的新生物合成策略来扩展可用于发现的分子空间。为了实现这一目标,我们为有机荧光新陈代谢设计了一种微生物宿主,并表明我们可以在约50%的产率下达到氟化二酮2-氟-3-羟基丁酸酯的生产。该氟化二酮可以用作体内的单体,以产生氟化聚(羟基烷烃)(PHA)生物塑料,其氟代取率范围为5-15%。该系统提供了通过键氟甲醛辅酶A(COA)构建块产生MM通量的平台,从而提供了在活细胞中产生广泛的氟化小分子靶标的可能性。

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