Structure of the Methanosarcina mazei Mtr complex bound to the oxygen-stress responsive small protein MtrI

T Tristan Reif-Trauttmansdorff E Eva Herdering S Stefan Bohn T Tomas Pascoa J Jörg Kahnt E Erik Zimmer A Anuj Kumar R Ruth A. Schmitz J Jan M. Schuller

Abstract

Abstract Methanogenic archaea emit ~1 Gt of methane annually, impacting global carbon cycling and climate. Central to their energy metabolism is a membrane-bound, sodium-translocating methyltransferase complex: the N⁵-tetrahydromethanopterin:CoM-S-methyltransferase (Mtr). It couples methyl transfer between two methanogen-specific cofactors with sodium ion transport across the membrane, forming the only energy-conserving step in hydrogenotrophic methanogenesis. Here, we present a 2.1 Å single-particle cryo-EM structure of the Mtr complex from Methanosarcina mazei . The structure reveals the organization of all catalytic subunits, embedded archaeal lipids and the sodium-binding site. Most strikingly, we discover MtrI, a previously unannotated small open-reading frame encoded protein ( < 100 aa) found within the order of Methanosarcinales that binds both the top of the sodium-channel and cytosolic domain of MtrA via its cobamide cofactor in response to oxygen exposure. This interaction likely prevents sodium leakage and stabilizes the complex under oxidative conditions, revealing an unexpected regulatory mechanism in methanogen energy conservation.

Article Details

Volume / Issue Vol. 17, Issue 1
Published December 23, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (9)

T

Tristan Reif-Trauttmansdorff

E

Eva Herdering

S

Stefan Bohn

T

Tomas Pascoa

J

Jörg Kahnt

E

Erik Zimmer

A

Anuj Kumar

R

Ruth A. Schmitz

J

Jan M. Schuller