State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, Hangzhou 311300, China.
Zhejiang Provincial Key Laboratory of Resources Protection and Innovation of Traditional Chinese Medicine, Zhejiang A&F University, Hangzhou 311300, China.
Molecules. 2022 Jul 26;27(15):4779. doi: 10.3390/molecules27154779.
The shikimate pathway is a necessary pathway for the synthesis of aromatic compounds. The intermediate products of the shikimate pathway and its branching pathway have promising properties in many fields, especially in the pharmaceutical industry. Many important compounds, such as shikimic acid, quinic acid, chlorogenic acid, gallic acid, pyrogallol, catechol and so on, can be synthesized by the shikimate pathway. Among them, shikimic acid is the key raw material for the synthesis of GS4104 (Tamiflu), an inhibitor of neuraminidase against avian influenza virus. Quininic acid is an important intermediate for synthesis of a variety of raw chemical materials and drugs. Gallic acid and catechol receive widespread attention as pharmaceutical intermediates. It is one of the hotspots to accumulate many kinds of target products by rationally modifying the shikimate pathway and its branches in recombinant strains by means of metabolic engineering. This review considers the effects of classical metabolic engineering methods, such as central carbon metabolism (CCM) pathway modification, key enzyme gene modification, blocking the downstream pathway on the shikimate pathway, as well as several expansion pathways and metabolic engineering strategies of the shikimate pathway, and expounds the synthetic biology in recent years in the application of the shikimate pathway and the future development direction.
莽草酸途径是芳香族化合物合成的必要途径。莽草酸途径及其分支途径的中间产物在许多领域都具有很好的应用前景,特别是在制药行业。许多重要的化合物,如莽草酸、奎宁酸、绿原酸、没食子酸、焦儿茶酚等,都可以通过莽草酸途径合成。其中,莽草酸是合成抗禽流感病毒神经氨酸酶抑制剂 GS4104(达菲)的关键原料。奎宁酸是合成多种原料化学品和药物的重要中间体。没食子酸和焦儿茶酚作为药物中间体受到广泛关注。通过代谢工程手段,在重组菌株中合理修饰莽草酸途径及其分支,积累多种目标产物是热点之一。本文综述了经典代谢工程方法(如中心碳代谢途径修饰、关键酶基因修饰、阻断下游途径)对莽草酸途径的影响,以及几种扩展途径和代谢工程策略,并阐述了近年来合成生物学在莽草酸途径中的应用及未来的发展方向。