甲基营养素
枯草芽孢杆菌
杆菌科
组合综合
芽孢杆菌目
计算生物学
生物
化学
生物技术
生化工程
生物化学
细菌
组合化学
遗传学
工程类
基因
作者
Qingfang Meng,Dexin Wang,Xiaoping Fu,Weitao Geng,Hong Zheng,Wenqin Bai
标识
DOI:10.1021/acs.jafc.4c09781
摘要
Methanol, which can come from methane or carbon dioxide, is a valuable renewable one-carbon (C1) feedstock for the production of biofuels and food chemicals. A new method was developed to create a multienzyme complex by combining methanol dehydrogenase (Mdh), 3-hexulose-6-phosphate synthase (Hps), and 6-phospho-3-hexuloseisomerase (Phi) in equal parts using SpyTag/Catcher and DogTag/Catcher systems. This self-assembly of multiple enzymes improves the conversion of methanol to fructose-6-phosphate (F6P) and was used to engineer a synthetic methylotroph from B. subtilis 168 that could efficiently utilize methanol. Various metabolic regulations related to key carbon pathways were tested and integrated to boost methanol consumption in this engineered strain. The final strain, B. subtilis SM6, could consume 3.87 g/L of methanol, marking the highest level of coutilization with xylose to date. The strategies employed in this research optimized the distribution of metabolic flow for formaldehyde and xylose, offering valuable insights for future studies on synthetic methylotrophs.
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