Biological conversion of methane to methanol through genetic reassembly of native catalytic domains

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초록

Methane monooxygenase (MMO), which exists in particulate (pMMO) or soluble forms (sMMO) in methanotrophic bacteria, is an industrially promising enzyme that catalyses oxidation of low-reactive methane and other carbon feedstocks into methanol and their corresponding oxidation products. However, the simple, fast and high-yield production of functionally active MMO, which has so far been unsuccessful despite diverse approaches based on either native methanotroph culture or recombinant expression systems, remains a major challenge for its industrial applications. Here we developed pMMO-mimetic catalytic protein constructs by genetically encoding the beneficial reassembly of catalytic domains of pMMO on apoferritin as a biosynthetic scaffold. This approach resulted in high-yield synthesis of stable and soluble protein constructs in Escherichia coli, which successfully retain enzymatic activity for methanol production with a turnover number comparable to that of native pMMO.

키워드

METHYLOCOCCUS-CAPSULATUS BATHMONOOXYGENASE PMMOCRYSTAL-STRUCTUREENZYME IMMOBILIZATIONHUMAN FERRITINACTIVE-SITEIN-VIVOOXIDATIONPROTEINCOPPER
제목
Biological conversion of methane to methanol through genetic reassembly of native catalytic domains
저자
Kim, Hyun JinHuh, JuneKwon, Young WanPark, DonghyunYu, YeonhwaJang, Young EunLee, Bo-RamJo, EunjiLee, Eun JungHeo, YunseokLee, WeontaeLee, Jeewon
DOI
10.1038/s41929-019-0255-1
발행일
2019-04
유형
Article
저널명
Nature Catalysis
2
4
페이지
342 ~ 353