Publications of Gangfeng Huang
All genres
Journal Article (12)
Journal Article
7 (12), pp. 1417 - 1429 (2024)
Parahydrogen-enhanced magnetic resonance identification of intermediates in [Fe]-hydrogenase catalysis. Nature Catalysis
Journal Article
60 (24), pp. 13350 - 13357 (2021)
Diversifying metal-ligand cooperative catalysis in semi-synthetic [Mn]-hydrogenases. Angewandte Chemie International Edition
Journal Article
74, pp. 713 - 733 (2020)
Structural Basis of Hydrogenotrophic Methanogenesis. Annual Review of Microbiology
Journal Article
432 (7), pp. 2042 - 2054 (2020)
The Hydride Transfer Process in NADP-dependent Methylene-tetrahydromethanopterin Dehydrogenase. Journal of Molecular Biology (London)
Journal Article
4 (2), pp. 213 - 221 (2020)
Methanogenesis involves direct hydride transfer from H2 to an organic substrate. Nature Reviews Chemistry
Journal Article
8 (9), 50 (2020)
Crystal structures of [Fe]-hydrogenase from Methanolacinia paynteri suggest a path of the FeGP-cofactor incorporation process. Inorganics
Journal Article
58 (11), pp. 3506 - 3510 (2019)
The Bacterial [Fe]‐Hydrogenase Paralog HmdII Uses Tetrahydrofolate Derivatives as Substrates. Angewandte Chemie International Edition in English
Journal Article
2 (6), pp. 537 - 543 (2019)
The atomic-resolution crystal structure of activated [Fe]-hydrogenase. Nature Catalysis
Journal Article
11 (7), pp. 669 - 675 (2019)
A catalytically active [Mn]-hydrogenase incorporating a non-native metal cofactor. NATURE CHEMISTRY
Journal Article
57 (46), pp. 15056 - 15059 (2018)
How [Fe]-Hydrogenase from Methanothermobacter is Protected Against Light and Oxidative Stress. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
Journal Article
57 (18), pp. 4917 - 4920 (2018)
Dioxygen Sensitivity of [Fe]-Hydrogenase in the Presence of Reducing Substrates. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
Journal Article
198, pp. 37 - 58 (2017)
Towards artificial methanogenesis: biosynthesis of the [Fe]-hydrogenase cofactor and characterization of the semisynthetic hydrogenase. Faraday Discussions Thesis - PhD (1)
Thesis - PhD
Studies on catalytic mechanism of [Fe]-hydrogenase from methanogenic archaea based on crystal structures. Dissertation, Philipps-Universität Marburg, Marburg (2019)
Preprint (1)
Preprint
Sensitivity-enhanced magnetic resonance reveals hydrogen intermediates during active [Fe]-hydrogenase catalysis. bioRxiv: the preprint server for biology, 2023.05.10.540199 (2023)