Poly-γ-glutamylation of biomolecules.

Bashiri, Ghader; Bulloch, Esther M M; Bramley, William R; Davidson, Madison; Stuteley, Stephanie M; Young, Paul G; Harris, Paul W R; Naqvi, Muhammad S H et al. · Nat Commun · 2024

basic_science · Level V

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Abstract

Poly-γ-glutamate tails are a distinctive feature of archaeal, bacterial, and eukaryotic cofactors, including the folates and F<sub>420</sub>. Despite decades of research, key mechanistic questions remain as to how enzymes successively add glutamates to poly-γ-glutamate chains while maintaining cofactor specificity. Here, we show how poly-γ-glutamylation of folate and F<sub>420</sub> by folylpolyglutamate synthases and γ-glutamyl ligases, non-homologous enzymes, occurs via processive addition of L-glutamate onto growing γ-glutamyl chain termini. We further reveal structural snapshots of the archaeal γ-glutamyl ligase (CofE) in action, crucially including a bulged-chain product that shows how the cofactor is retained while successive glutamates are added to the chain terminus. This bulging substrate model of processive poly-γ-glutamylation by terminal extension is arguably ubiquitous in such biopolymerisation reactions, including addition to folates, and demonstrates convergent evolution in diverse species from archaea to humans.

Medical subject headings