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通过非自然反应进行动力学隔室化以生产衣康酸。

Kinetic compartmentalization by unnatural reaction for itaconate production.

机构信息

Department of Chemical Engineering, Pohang University of Science and Technology, 77 Cheongam-Ro, Nam-Gu, Pohang, Gyeongbuk, 37673, Republic of Korea.

Centre for Research in Agricultural Genomics (CRAG), CSIC-IRTA-UAB-UB, Campus UAB, Bellaterra, Barcelona, 08193, Spain.

出版信息

Nat Commun. 2022 Sep 12;13(1):5353. doi: 10.1038/s41467-022-33033-1.

Abstract

Physical compartmentalization of metabolism using membranous organelles in eukaryotes is helpful for chemical biosynthesis to ensure the availability of substrates from competitive metabolic reactions. Bacterial hosts lack such a membranous system, which is one of the major limitations for efficient metabolic engineering. Here, we employ kinetic compartmentalization with the introduction of an unnatural enzymatic reaction by an engineered enzyme as an alternative strategy to enable substrate availability from competitive reactions through kinetic isolation of metabolic pathways. As a proof of concept, we kinetically isolate the itaconate synthetic pathway from the tricarboxylic acid cycle in Escherichia coli, which is natively separated by mitochondrial membranes in Aspergillus terreus. Specifically, 2-methylcitrate dehydratase is engineered to alternatively catalyze citrate and kinetically secure cis-aconitate for efficient production using a high-throughput screening system. Itaconate production can be significantly improved with kinetic compartmentalization and its strategy has the potential to be widely applicable.

摘要

真核生物利用膜细胞器进行代谢的物理分隔有助于化学生物合成,以确保有竞争代谢反应的底物。细菌宿主缺乏这样的膜系统,这是高效代谢工程的主要限制因素之一。在这里,我们通过引入工程酶的非天然酶促反应来进行动力学分隔,作为一种替代策略,通过代谢途径的动力学隔离来实现来自竞争反应的底物可用性。作为概念验证,我们在大肠杆菌中从三羧酸循环中动力学分离衣康酸合成途径,该途径在土曲霉中被线粒体膜天然分隔。具体来说,通过高通量筛选系统,工程化的 2-甲基柠檬酸脱水酶替代催化柠檬酸,并动力学地确保顺式乌头酸用于高效生产。通过动力学分隔可以显著提高衣康酸的产量,并且该策略具有广泛应用的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ce6/9468356/417cba9fdd96/41467_2022_33033_Fig1_HTML.jpg

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