Diversity of electron-bifurcating CO 2 -fixing supercomplexes in methanogens

In the hydrogenotrophic methanogenic pathway, formylmethanofuran dehydrogenase (Fmd) reduces and fixes CO 2 , driven by low-potential electrons provided by electron-bifurcating heterodisulfide reductase (Hdr) complexed with electron-donating proteins such as Mvh hydrogenase. Here, we report the structure of a C2-symmetric (Mvh-Hdr) 2 -Fmd 4 supercomplex from a Class I methanogen, Methanothermobacter marburgensis , which is architecturally different from the previously reported ring-shaped D3-symmetric supercomplex of a methanogen belonging to phylogenetically distinct Class II methanogens. In this C2-symmetric form, the redox active sites of Hdr and Fmd are connected by two MvhB polyferredoxins, whose branching electron paths appear to be available for electron transfer to/from other partners. The ancestral form was likely C2 symmetric, whereas D3-symmetric supercomplexes were acquired by horizontal gene transfer, a transition probably helpful for growth in substrate-poor environments.

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Journal
Science Advances
Published
2026-09-16
DOI
https://doi.org/10.1126/sciadv.aed3711
Primary Topic
Metalloenzymes and iron-sulfur proteins
Type
article
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article

Diversity of electron-bifurcating CO 2 -fixing supercomplexes in methanogens

Pablo San Segundo‐Acosta, Jörg Kahnt, Seigo Shima, Bonnie J. Murphy et al.
Science Advances
Metalloenzymes and iron-sulfur proteins
article

Diversity of electron-bifurcating CO 2 -fixing supercomplexes in methanogens

Pablo San Segundo‐Acosta, Jörg Kahnt, Seigo Shima, Bonnie J. Murphy, Eugeniy S. Protasov, Georg Hochberg, Masanori Kaneko, Joao Pedro Fernandes‐Queiroz, Shunsuke Nomura
article en

Abstract

In the hydrogenotrophic methanogenic pathway, formylmethanofuran dehydrogenase (Fmd) reduces and fixes CO 2 , driven by low-potential electrons provided by electron-bifurcating heterodisulfide reductase (Hdr) complexed with electron-donating proteins such as Mvh hydrogenase. Here, we report the structure of a C2-symmetric (Mvh-Hdr) 2 -Fmd 4 supercomplex from a Class I methanogen, Methanothermobacter marburgensis , which is architecturally different from the previously reported ring-shaped D3-symmetric supercomplex of a methanogen belonging to phylogenetically distinct Class II methanogens. In this C2-symmetric form, the redox active sites of Hdr and Fmd are connected by two MvhB polyferredoxins, whose branching electron paths appear to be available for electron transfer to/from other partners. The ancestral form was likely C2 symmetric, whereas D3-symmetric supercomplexes were acquired by horizontal gene transfer, a transition probably helpful for growth in substrate-poor environments.

Science AdvancesVol. 12(38)
Max Planck Institute of Biophysics (DE), Geological Survey of Japan (JP), Max Planck Institute for Terrestrial Microbiology (DE), National Institute of Advanced Industrial Science and Technology (JP)
No poverty
Openalex Percentile: Top 29%
Metalloenzymes and iron-sulfur proteins
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Diversity of electron-bifurcating CO 2 -fixing supercomplexes in methanogens — Pablo San Segundo‐Acosta, Jörg Kahnt, et al. · Science Advances (2026) | TGRS Research Map | TGRS