Chai Tiantian, Tao Yuxuan, Zhao Chunlei, Chen Xiulai
School of Biotechnology and Key Laboratory of Industrial Biotechnology of Ministry of Education, Jiangnan University, Wuxi 214122, China.
FEMS Microbiol Rev. 2025 Jan 14;49. doi: 10.1093/femsre/fuaf047.
Metabolic engineering is a key enabling technology for rewiring cellular metabolism to enhance production of chemicals, biofuels, and materials from renewable resources. However, how to make cells into efficient factories is still challenging due to its robust metabolic networks. To open this door, metabolic engineering has realized great breakthroughs through three waves of technological research and innovations, especially the third wave. To understand the third wave of metabolic engineering better, we discuss its mainstream strategies and examples of its application at five hierarchies, including part, pathway, network, genome, and cell level, and provide insights as to how to rewire cellular metabolism in the context of maximizing product titer, yield, and productivity. Finally, we highlight future perspectives on metabolic engineering for the successful development of cell factories.
代谢工程是一种关键的使能技术,用于重新布线细胞代谢,以提高利用可再生资源生产化学品、生物燃料和材料的能力。然而,由于细胞强大的代谢网络,如何将细胞转变为高效的工厂仍然具有挑战性。为了打开这扇门,代谢工程通过三轮技术研究和创新,尤其是第三轮创新,实现了重大突破。为了更好地理解代谢工程的第三轮创新,我们在五个层次上讨论了其主流策略及其应用实例,包括部件、途径、网络、基因组和细胞水平,并就如何在最大化产物滴度、产率和生产率的背景下重新布线细胞代谢提供了见解。最后,我们强调了代谢工程在成功开发细胞工厂方面的未来前景。