角鲨烯
枯草芽孢杆菌
ATP合酶
代谢工程
生物化学
角鲨烯单加氧酶
生物合成
异戊二烯
化学
巨芽孢杆菌
羊毛甾醇
萜烯
酶
甾醇
生物
胆固醇
有机化学
细菌
聚合物
遗传学
共聚物
作者
Yafeng Song,Guoqiang Zheng,Ronald van Merkerk,Hegar Pramastya,Ingy I Abdallah,Rita Setroikromo,Wim J. Quax
标识
DOI:10.1021/acs.jafc.0c00375
摘要
Squalene synthase (SQS) catalyzes the conversion of two farnesyl pyrophosphates to squalene, an important intermediate in between isoprene and valuable triterpenoids. In this study, we have constructed a novel biosynthesis pathway for squalene in Bacillus subtilis and performed metabolic engineering aiming at facilitating further exploitation and production of squalene-derived triterpenoids. Therefore, systematic studies and analysis were performed including selection of multiple SQS candidates from various organisms, comparison of expression vectors, optimization of cultivation temperatures, and examination of rate-limiting factors within the synthetic pathway. We were, for the first time, able to obtain squalene synthesis in B. subtilis. Furthermore, we achieved a 29-fold increase of squalene yield (0.26–7.5 mg/L) by expressing SQS from Bacillus megaterium and eliminating bottlenecks within the upstream methylerythritol-phosphate pathway. Moreover, our findings showed that also ispA could positively affect the production of squalene.
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