Department of Chemical and Biological Engineering, Iowa State University, USA; NSF Engineering Research Center for Biorenewable Chemicals (CBiRC), Iowa State University, USA.
School of Life Sciences, No.1 Wenyuan Road, Nanjing Normal University, Qixia District, Nanjing, 210023, China.
Metab Eng. 2020 Mar;58:94-132. doi: 10.1016/j.ymben.2019.08.008. Epub 2019 Aug 10.
The aromatic amino acid biosynthesis pathway, together with its downstream branches, represents one of the most commercially valuable biosynthetic pathways, producing a diverse range of complex molecules with many useful bioactive properties. Aromatic compounds are crucial components for major commercial segments, from polymers to foods, nutraceuticals, and pharmaceuticals, and the demand for such products has been projected to continue to increase at national and global levels. Compared to direct plant extraction and chemical synthesis, microbial production holds promise not only for much shorter cultivation periods and robustly higher yields, but also for enabling further derivatization to improve compound efficacy by tailoring new enzymatic steps. This review summarizes the biosynthetic pathways for a large repertoire of commercially valuable products that are derived from the aromatic amino acid biosynthesis pathway, and it highlights both generic strategies and specific solutions to overcome certain unique problems to enhance the productivities of microbial hosts.
芳香族氨基酸生物合成途径及其下游分支是最具商业价值的生物合成途径之一,可生产出具有多种有用生物活性的复杂分子。芳香族化合物是从聚合物到食品、营养保健品和药物等主要商业领域的关键组成部分,预计此类产品的需求在国家和全球范围内将继续增加。与直接植物提取和化学合成相比,微生物生产不仅有望缩短培养周期并大幅提高产量,而且还可以通过定制新的酶促步骤来进一步衍生化以提高化合物的功效。本文综述了大量源自芳香族氨基酸生物合成途径的具有商业价值的产品的生物合成途径,并重点介绍了通用策略和特定解决方案,以克服某些独特问题来提高微生物宿主的生产力。