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从支链儿茶酚全生物合成己二酸类似物。

Fully biological production of adipic acid analogs from branched catechols.

机构信息

School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, Atlanta, GA, 30332, USA.

School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, GA, 30332, USA.

出版信息

Sci Rep. 2020 Aug 7;10(1):13367. doi: 10.1038/s41598-020-70158-z.

Abstract

Microbial production of adipic acid from lignin-derived monomers, such as catechol, is a greener alternative to the petrochemical-based process. Here, we produced adipic acid from catechol using catechol 1,2-dioxygenase (CatA) and a muconic acid reductase (MAR) in Escherichia coli. As the reaction progressed, the pH of the media dropped from 7 to 4-5 and the muconic acid isomerized from the cis,cis (ccMA) to the cis,trans (ctMA) isomer. Feeding experiments suggested that cells preferentially uptook ctMA and that MAR efficiently reduced all muconic isomers to adipic acid. Intrigued by the substrate promiscuity of MAR, we probed its utility to produce branched chiral diacids. Using branched catechols likely found in pretreated lignin, we found that while MAR fully reduced 2-methyl-muconic acid to 2-methyl-adipic acid, MAR reduced only one double bond in 3-substituted muconic acids. In the future, MAR's substrate promiscuity could be leveraged to produce chiral-branched adipic acid analogs to generate branched, nylon-like polymers with reduced crystallinity.

摘要

微生物利用木质素衍生的单体(如儿茶酚)生产己二酸,是一种比基于石化产品的工艺更环保的选择。在这里,我们使用儿茶酚 1,2-双加氧酶(CatA)和粘康酸还原酶(MAR)在大肠杆菌中从儿茶酚生产己二酸。随着反应的进行,培养基的 pH 值从 7 降至 4-5,粘康酸从顺式,顺式(ccMA)异构成顺式,反式(ctMA)异构体。进料实验表明,细胞优先摄取 ctMA,并且 MAR 有效地将所有粘康酸异构体还原为己二酸。MAR 对底物的广泛适用性引起了我们的兴趣,我们探究了其用于生产支链手性二酸的用途。使用预处理木质素中可能存在的支链儿茶酚,我们发现 MAR 完全将 2-甲基-粘康酸还原为 2-甲基-己二酸,但仅还原 3-取代粘康酸中的一个双键。将来,MAR 的底物广泛适用性可以被利用来生产手性支链己二酸类似物,从而生成支化的、类似尼龙的聚合物,其结晶度降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5306/7414886/0fe54bae8936/41598_2020_70158_Fig1_HTML.jpg

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