生物转化
毕赤酵母
甲醇
化学
代谢工程
生物炼制
酵母
生物化学
脂肪酸
甲醛脱氢酶
毕赤酵母
生产过剩
有机化学
酶
NAD+激酶
原材料
重组DNA
基因
作者
Peng Cai,Xiaoyan Wu,Jun Deng,Linhui Gao,Yanchang Shen,Lun Yao,Yongjin J. Zhou
标识
DOI:10.1073/pnas.2201711119
摘要
Methanol-based biorefinery is a promising strategy to achieve carbon neutrality goals by linking CO2 capture and solar energy storage. As a typical methylotroph, Pichia pastoris shows great potential in methanol biotransformation. However, challenges still remain in engineering methanol metabolism for chemical overproduction. Here, we present the global rewiring of the central metabolism for efficient production of free fatty acids (FFAs; 23.4 g/L) from methanol, with an enhanced supply of precursors and cofactors, as well as decreased accumulation of formaldehyde. Finally, metabolic transforming of the fatty acid cell factory enabled overproduction of fatty alcohols (2.0 g/L) from methanol. This study demonstrated that global metabolic rewiring released the great potential of P. pastoris for methanol biotransformation toward chemical overproduction.
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