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Site-directed mutagenesis of coenzyme-independent carotenoid oxygenase CSO2 to enhance the enzymatic synthesis of vanillin

  • Xueyan Yao
  • , Yuemeng Lv
  • , Huilei Yu
  • , Hao Cao
  • , Luyao Wang
  • , Boting Wen
  • , Tianyi Gu
  • , Fengzhong Wang*
  • , Lichao Sun
  • , Fengjiao Xin
  • *此作品的通讯作者
  • Chinese Academy of Agricultural Sciences
  • East China University of Science and Technology

科研成果: 期刊稿件文章同行评审

摘要

Vanillin is a popular flavoring compound and an important food additive. Owing to the consumer preference for inexpensive natural aroma flavors, vanillin production through a biotechnological pathway has become of great interest and commercial value in recent years. In this study, an enzymatic synthetic system for vanillin using a coenzyme-independent decarboxylase (FDC) and oxygenase (CSO2) cascade was reconstituted and optimized. This system produces a slightly higher production yield (40.20%) than the largest yield reported for immobilized FDC and CSO2 (35.00%) with ferulic acid as a substrate. It was previously reported that the low catalytic activity and thermal instability of CSO2 restrict the overall productivity of vanillin. In present study, site-directed mutagenesis was applied to rate-limiting oxygenase CSO2 to generate positive mutants. The production yields of mutants A49P (58.44%) and Q390A (65.29%) were 1.45- and 1.62-fold that of CSO2 wild type, respectively. The potential mechanism for enhanced vanillin production using A49P involved increased thermostability and catalytic efficiency, while that using Q390A was probably associated with a better thermostable performance and increased catalytic efficiency resulting from a larger entrance channel.

源语言英语
页(从-至)3897-3907
页数11
期刊Applied Microbiology and Biotechnology
104
9
DOI
出版状态已出版 - 1 5月 2020
已对外发布

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