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碱预处理木质素通过动态两段生物转化生产衣康酸。

Production of itaconic acid from alkali pretreated lignin by dynamic two stage bioconversion.

机构信息

Biosciences Division, Oak Ridge National Laboratory, Oak Ridge, TN, USA.

Biological Sciences Division, Pacific Northwest National Laboratory, Richland, WA, USA.

出版信息

Nat Commun. 2021 Apr 15;12(1):2261. doi: 10.1038/s41467-021-22556-8.

Abstract

Expanding the portfolio of products that can be made from lignin will be critical to enabling a viable bio-based economy. Here, we engineer Pseudomonas putida for high-yield production of the tricarboxylic acid cycle-derived building block chemical, itaconic acid, from model aromatic compounds and aromatics derived from lignin. We develop a nitrogen starvation-detecting biosensor for dynamic two-stage bioproduction in which itaconic acid is produced during a non-growth associated production phase. Through the use of two distinct itaconic acid production pathways, the tuning of TCA cycle gene expression, deletion of competing pathways, and dynamic regulation, we achieve an overall maximum yield of 56% (mol/mol) and titer of 1.3 g/L from p-coumarate, and 1.4 g/L titer from monomeric aromatic compounds produced from alkali-treated lignin. This work illustrates a proof-of-principle that using dynamic metabolic control to reroute carbon after it enters central metabolism enables production of valuable chemicals from lignin at high yields by relieving the burden of constitutively expressing toxic heterologous pathways.

摘要

扩大可从木质素中制造的产品组合对于实现可行的基于生物的经济至关重要。在这里,我们通过工程改造恶臭假单胞菌,使其能够从模型芳香族化合物和木质素衍生的芳香族化合物中高产三羧酸循环衍生的建筑块化学品衣康酸。我们开发了一种氮饥饿检测生物传感器,用于动态两段式生物生产,其中衣康酸在非生长相关生产阶段产生。通过使用两种不同的衣康酸生产途径、调节 TCA 循环基因表达、删除竞争途径以及动态调节,我们从对羟基肉桂酸实现了 56%(摩尔/摩尔)的总体最高产率和 1.3 g/L 的浓度,从碱处理木质素产生的单体芳香族化合物中实现了 1.4 g/L 的浓度。这项工作说明了一个原理验证,即使用动态代谢控制在碳进入中心代谢后重新路由碳,可以通过减轻组成型表达有毒异源途径的负担,从木质素中以高产率生产有价值的化学品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72e5/8050072/6008e1df0dfa/41467_2021_22556_Fig1_HTML.jpg

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