Watanabe Tomohiro, Wagner Tristan, Huang Gangfeng, Kahnt Jörg, Ataka Kenichi, Ermler Ulrich, Shima Seigo
Microbial Protein Structure Group, Max Planck Institute for Terrestrial Microbiology, Karl-von-Frisch Straße 10, 35043, Marburg, Germany.
Current address: Microbial Metabolism group, Max Planck Institute for Marine Microbiology, Celsiusstrasse 1, 28359, Bremen, Germany.
Angew Chem Int Ed Engl. 2019 Mar 11;58(11):3506-3510. doi: 10.1002/anie.201813465. Epub 2019 Jan 25.
[Fe]-hydrogenase (Hmd) catalyzes the reversible hydrogenation of methenyl-tetrahydromethanopterin (methenyl-H MPT ) with H . H MPT is a C1-carrier of methanogenic archaea. One bacterial genus, Desulfurobacterium, contains putative genes for the Hmd paralog, termed HmdII, and the HcgA-G proteins. The latter are required for the biosynthesis of the prosthetic group of Hmd, the iron-guanylylpyridinol (FeGP) cofactor. This finding is intriguing because Hmd and HmdII strictly use H MPT derivatives that are absent in most bacteria. We identified the presence of the FeGP cofactor in D. thermolithotrophum. The bacterial HmdII reconstituted with the FeGP cofactor catalyzed the hydrogenation of derivatives of tetrahydrofolate, the bacterial C1-carrier, albeit with low enzymatic activities. The crystal structures show how Hmd recognizes tetrahydrofolate derivatives. These findings have an impact on future biotechnology by identifying a bacterial Hmd paralog.
[铁]氢化酶(Hmd)催化亚甲基-四氢甲蝶呤(亚甲基-H4MPT)与H2的可逆氢化反应。H4MPT是产甲烷古菌的一种C1载体。一个细菌属,脱硫杆菌属,含有Hmd旁系同源物(称为HmdII)以及HcgA-G蛋白的推定基因。后者是Hmd辅基铁-鸟苷基吡啶醇(FeGP)辅因子生物合成所必需的。这一发现很有趣,因为Hmd和HmdII严格使用大多数细菌中不存在的H4MPT衍生物。我们在嗜热嗜石脱硫杆菌中鉴定出了FeGP辅因子的存在。用FeGP辅因子重构的细菌HmdII催化了细菌C1载体四氢叶酸衍生物的氢化反应,尽管酶活性较低。晶体结构展示了Hmd如何识别四氢叶酸衍生物。这些发现通过鉴定一种细菌Hmd旁系同源物,对未来的生物技术产生了影响。