Batianis Christos, van Rosmalen Rik P, Major Monika, van Ee Cheyenne, Kasiotakis Alexandros, Weusthuis Ruud A, Martins Dos Santos Vitor A P
Laboratory of Systems and Synthetic Biology, Wageningen University & Research, Wageningen, the Netherlands.
Bioprocess Engineering, Wageningen University and Research, Wageningen, the Netherlands.
Metab Eng. 2023 Jan;75:47-57. doi: 10.1016/j.ymben.2022.10.002. Epub 2022 Oct 13.
Metabolic engineering of microorganisms aims to design strains capable of producing valuable compounds under relevant industrial conditions and in an economically competitive manner. From this perspective, and beyond the need for a catalyst, biomass is essentially a cost-intensive, abundant by-product of a microbial conversion. Yet, few broadly applicable strategies focus on the optimal balance between product and biomass formation. Here, we present a genetic control module that can be used to precisely modulate growth of the industrial bacterial chassis Pseudomonas putida KT2440. The strategy is based on the controllable expression of the key metabolic enzyme complex pyruvate dehydrogenase (PDH) which functions as a metabolic valve. By tuning the PDH activity, we accurately controlled biomass formation, resulting in six distinct growth rates with parallel overproduction of excess pyruvate. We deployed this strategy to identify optimal growth patterns that improved the production yield of 2-ketoisovalerate and lycopene by 2.5- and 1.38-fold, respectively. This ability to dynamically steer fluxes to balance growth and production substantially enhances the potential of this remarkable microbial chassis for a wide range of industrial applications.
微生物代谢工程旨在设计出能够在相关工业条件下以经济上具有竞争力的方式生产有价值化合物的菌株。从这个角度来看,除了对催化剂的需求之外,生物质本质上是微生物转化过程中一种成本高昂且产量丰富的副产品。然而,很少有广泛适用的策略关注产物形成与生物质形成之间的最佳平衡。在此,我们展示了一个遗传控制模块,它可用于精确调节工业细菌底盘恶臭假单胞菌KT2440的生长。该策略基于关键代谢酶复合物丙酮酸脱氢酶(PDH)的可控表达,其作为一个代谢阀门发挥作用。通过调节PDH活性,我们精确控制了生物质的形成,产生了六种不同的生长速率,并同时过量生产了丙酮酸。我们运用这一策略确定了最佳生长模式,分别将2-酮异戊酸和番茄红素的产量提高了2.5倍和1.38倍。这种动态引导通量以平衡生长和生产的能力极大地增强了这种卓越的微生物底盘在广泛工业应用中的潜力。