黄素组
氢化酶
铁氧还蛋白
格式化
甲酸脱氢酶
电子
化学
电子转移
电子传输链
生物化学
酶
光化学
材料科学
催化作用
物理
量子力学
作者
Tomohiro Watanabe,Olivia Pfeil-Gardiner,Jörg Kahnt,J. Koch,Seigo Shima,Bonnie J. Murphy
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2021-09-02
卷期号:373 (6559): 1151-1156
被引量:62
标识
DOI:10.1126/science.abg5550
摘要
The first reaction of the methanogenic pathway from carbon dioxide (CO2) is the reduction and condensation of CO2 to formyl-methanofuran, catalyzed by formyl-methanofuran dehydrogenase (Fmd). Strongly reducing electrons for this reaction are generated by heterodisulfide reductase (Hdr) in complex with hydrogenase or formate dehydrogenase (Fdh) using a flavin-based electron-bifurcation mechanism. Here, we report enzymological and structural characterizations of Fdh-Hdr-Fmd complexes from Methanospirillum hungatei. The complexes catalyze this reaction using electrons from formate and the reduced form of the electron carrier F420. Conformational changes in HdrA mediate electron bifurcation, and polyferredoxin FmdF directly transfers electrons to the CO2 reduction site, as evidenced by methanofuran-dependent flavin-based electron bifurcation even without free ferredoxin, a diffusible electron carrier between Hdr and Fmd. Conservation of Hdr and Fmd structures suggests that this complex is common among hydrogenotrophic methanogens.
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