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A Chimera between Particulate and Soluble Methane Monooxygenases Produces Methanol Using Endogenous NADH in Escherichia coli
- Yu, Yeonhwa;
- Choi, Yoobin;
- Kwon, Young Wan;
- Lee, Jeewon
WEB OF SCIENCE
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4초록
Methane monooxygenases (MMOs), found in methanotrophs as particulate (pMMO) or soluble (sMMO) forms, catalyze methane oxidation through overcoming high activation energy of the stable C-H bond under ambient conditions and are thus promising biocatalysts for environmentally and economically benign utilization of methane; however, their mass production and industrial application remain unsettled due to membrane-associated, unclarified electron transfer to the catalytic site of pMMO and multicomponent, complex structure and function of sMMO. Here, we developed a chimeric MMO (cMMO) through reassembling the catalytic dicopper center of pMMO and the endogenous NADH-dependent FAD domain of sMMO on a robust scaffold, which is favorable for molecular editing. The cMMO was produced as a catalytically active enzyme (turnover frequency, similar to 0.1 s-1) in a large quantity from Escherichia coli. Notably, cMMO-expressing E. coli successfully converted methane to methanol without a requirement of exogenous reductants, indicating that this innovative approach offers an attractive platform for biocatalytic methane utilization.
키워드
- 제목
- A Chimera between Particulate and Soluble Methane Monooxygenases Produces Methanol Using Endogenous NADH in Escherichia coli
- 저자
- Yu, Yeonhwa; Choi, Yoobin; Kwon, Young Wan; Lee, Jeewon
- 발행일
- 2025-12-05
- 유형
- Article
- 저널명
- ACS Catalysis
- 권
- 15
- 호
- 23
- 페이지
- 20170 ~ 20183