Orchestrating Improbable Chemistries: Structural Snapshots of B12-Dependent Methionine Synthase's Catalytic Choreography
Mendoza, J.; Yamada, K.; Castillo, C.; Wilhelm, C. A.; Koutmos, M.
Show abstract
Cobalamin (vitamin B12) and its derivatives play an essential role in biological methylation, with cobalamin-dependent methionine synthase (MS) serving as a canonical example. MS catalyzes multiple methyl transfers within a single, dynamic multi-domain architecture that has proven challenging to study, hampering efforts to elucidate its catalytic mechanism(s). Utilizing a thermostable MS homolog and non-native cobalamin cofactors, we have captured crystal structures of transient conformational states of MS, including those directly involved in folate demethylation and homocysteine methylation. These snapshots reveal the mechanistic significance of five-coordinate, His-off methylcobalamin in homocysteine methylation and highlight the crucial role of the folate-binding domain and interdomain linkers in orchestrating the intricate structural rearrangements required for catalysis. This expanded conformational ensemble, including the unexpected capture of novel Cap-on conformations, underscores the remarkable plasticity of MS, exceeding previous estimations. Our findings provide crucial insights into the catalytic mechanism of MS, laying the foundation for harnessing cobalamins biocatalytic potential and elucidating how nature exploits protein dynamics to facilitate complex transformations.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Structure of full-length cobalamin-dependent methionine synthase and cofactor loading captured in crystallo 99%
- Active site remodeling in IDH1 mutants drives distinct kinetic and potential resistance mechanisms 97%
- Mechanistic studies of mycobacterial glycolipid biosynthesis by the mannosyltransferase PimE 96%
Similar papers in this journal
- Nucleotide and metalloid-driven conformational changes in the arsenite efflux ATPase ArsA 96%
- Mechanism of allosteric activation in human mitochondrial ClpP protease 96%
- The structure of full-length AFPK supports the ACP linker in a role that regulates iterative polyketide and fatty acid assembly 95%
Similar papers in this journal
Similar papers in this journal
- Promiscuous enzymes cooperate at the substrate level en route to lactazole A 95%
- Semi-synthetic CoA-alpha-Synuclein Constructs Trap N-terminal Acetyltransferase NatB for Binding Mechanism Studies 95%
- Mass spectrometry of RNA-binding proteins during liquid-liquid phase separation reveals distinct assembly mechanisms and droplet architectures 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.