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Resolution of alkaloid racemate: a novel microbial approach for the production of enantiopure lupanine via industrial wastewater valorization

机译:生物碱消除物的分辨率:一种通过工业废水储存对对脑血红莲生产的新型微生物方法

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Lupanine is a plant toxin contained in the wastewater of lupine bean processing industries, which could be used for semi-synthesis of various novel high added-value compounds. This paper introduces an environmental friendly process for microbial production of enantiopure lupanine. Previously isolated P. putida LPK411, R. rhodochrous LPK211 and Rhodococcus sp. LPK311, holding the capacity to utilize lupanine as single carbon source, were employed as biocatalysts for resolution of racemic lupanine. All strains achieved high enantiomeric excess (ee) of L-(?)-lupanine (?95%), while with the use of LPK411 53% of the initial racemate content was not removed. LPK411 fed with lupanine enantiomers as single substrates achieved 92% of D-(+)-lupanine biodegradation, whereas L-(?)-lupanine was not metabolized. Monitoring the transcriptional kinetics of the luh gene in cultures supplemented with the racemate as well as each of the enantiomers supported the enantioselectivity of LPK411 for D-(+)-lupanine biotransformation, while (trans)-6-oxooctahydro-1H-quinolizine-3-carboxylic acid was detected as final biodegradation product from D-(+)-lupanine use. Ecotoxicological assessment demonstrated that lupanine enantiomers were less toxic to A. fischeri compared to the racemate exhibiting synergistic interaction. The biological chiral separation process of lupanine presented here constitutes an eco-friendly and low-cost alternative to widely used chemical methods for chiral separation.
机译:Lupanine是植物毒素中包含的植物豆类加工行业废水,可用于各种新型高附加值化合物的半合成。本文介绍了对Lupanine的微生物生产的环保过程。以前分离的p. putida lpk411,R. rhodochrous LPK211和rhodococcus sp。 LPK311持有利用Lupanine作为单一碳源的能力,作为用于分辨外消旋Lupanine的生物催化剂。所有菌株均达到L - (α) - 卢普宁(>β95%)的高对映体过量(EE),而使用LPK411 53%的初始外消旋物含量未被除去。 LPK411用Lupanine对映体喂食,作为单一的底物,达到D - (+) - 卢帕宁生物降解的92%,而L - (?) - 卢帕宁未代谢。监测补充用外消旋甲酸盐的LUH基因的转录动力学以及每个对映体支持的LPK411对D - (+) - Lupanine生物转换的映射性,而(反式)-6-氧代孔-3 - 喹啉-3 - 从D - (+) - Lupanine使用中检测到最终生物降解产物的羧酸。生态毒理学评估证明,与表现出协同相互作用的外消旋体相比,兰宁对映体对A.Fischeri的毒性较小。本文介绍的卢帕宁的生物学手性分离过程构成了生态友好且低成本的替代方案,以广泛使用的化学方法进行手性分离。

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