Proteomics

Dataset Information

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Mtr complex and MtrI quantification from Methanosarcina mazei


ABSTRACT: This dataset contains LC-MS/MS data from multiple experiments investigating the N⁵-methyltetrahydromethanopterin:CoM-S-methyltransferase (Mtr) complex of Methanosarcina mazei, with quantitative analysis performed using MaxQuant. Experiment 1: Strep-Tactin-based purification of the native Mtr complex from M. mazei grown on methanol. Samples were divided into two conditions: Group 1: Purification performed under aerobic conditions Group 2: Purification performed under anaerobic conditions Each condition was analyzed in biological triplicates. The aim was to quantify the relative abundance of MtrI (Uniprot ID: Q8PUD4) compared to other Mtr subunits, particularly MtrA. Experiment 2: Similar to Experiment 1, but cells were grown on H₂/CO₂ instead of methanol. Group 1: Aerobic purification Group 2: Anaerobic purification Again, biological triplicates were performed for each condition. The objective remained the same: to quantify MtrI in both groups relative to other Mtr subunits. Experiment 3: Reciprocal pulldown of Mtr subunits using His-tagged MtrI expressed in M. mazei, purified via Ni-NTA affinity chromatography. Empty vector control purifications were included to assess specificity of interactions. Full experimental details are available in the associated manuscript (Reif-Trauttmansdorff et al., 2025, in preparation).

INSTRUMENT(S):

ORGANISM(S): Methanosarcina Mazei Go1

TISSUE(S): Permanent Cell Line Cell, Cell Culture

SUBMITTER: Tristan Reif-Trauttmansdorff  

LAB HEAD: Jan Schuller

PROVIDER: PXD064689 | Pride | 2026-01-19

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
H2_proteinGroups.txt Txt
HisMtrI_MtrI_rep_A.raw Raw
HisMtrI_MtrI_rep_B.raw Raw
HisMtrI_MtrI_rep_C.raw Raw
HisMtrI_Vector_control_1.raw Raw
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Publications

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

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

Nature communications 20251223 1


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 cry  ...[more]

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