一氧化碳脱氢酶
化学
生物化学
铁氧还蛋白
乙酰辅酶A
一氧化碳
辅因子
突变体
新陈代谢
酶
基因
催化作用
作者
Hyun-Soo Kang,Byeonghyeok Park,So‐Young Oh,Duleepa Pathiraja,Ji-Yeon Kim,Seung-Hyeon Jung,Jiyeong Jeong,Minseok Cha,Zee‐Yong Park,In‐Geol Choi,In Seop Chang
标识
DOI:10.1016/j.biortech.2021.125879
摘要
Microbial conversion of carbon monoxide (CO) to acetate is a promising upcycling strategy for carbon sequestration. Herein, we demonstrate that CO conversion and acetate production rates of Eubacterium limosum KIST612 strain can be improved by in silico prediction and in vivo assessment. The mimicked CO metabolic model of KIST612 predicted that overexpressing the CO dehydrogenase (CODH) increases CO conversion and acetate production rates. To validate the prediction, we constructed mutant strains overexpressing CODH gene cluster and measured their CO conversion and acetate production rates. A mutant strain (ELM031) co-overexpressing CODH, coenzyme CooC2 and ACS showed a 3.1 × increased specific CO oxidation rate as well as 1.4 × increased specific acetate production rate, compared to the wild type strain. The transcriptional and translational data with redox balance analysis showed that ELM031 has enhanced reducing potential from up-regulation of ferredoxin and related metabolism directly linked to energy conservation.
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