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HYPK promotes N-terminal protein acetylation through rapid ribosome exchange of NatA

Molecular Cell. 2025-12; 
Alfred M Lentzsch, Ziyi Fan, Inayat U Irshad, Edward P O'Brien, Ajeet K Sharma, Rachel Green, Shu-Ou Shan Division of Chemistry and Chemical Engineering, California Institute of Technology
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Peptide Synthesis Reactions were conducted as described previously47 with minor variations. Reactions contained various concentrations of H4 peptide substrate (sequence SGRGKGGKGLGKGGAKRHR, Genscript) Get A Quote

Abstract

Numerous protein biogenesis factors cotranslationally facilitate the maturation of nascent proteins. Among them, N-terminal acetyltransferase A (NatA) acetylates the N terminus of ∼40% of the eukaryotic proteome. NatA is bound to Huntingtin-interacting protein K (HYPK), which inhibits NatA activity in vitro but enhances function in vivo. Here, kinetic and in-cell measurements resolve this paradox, showing that HYPK acts as a ribosome exchange factor for NatA. Without HYPK, hyper-tight ribosome binding prevents NatA from accessing additional ribosomes following each round of acetylation. HYPK accelerates NatA dissociation from the ribosome to license multiple turnovers, allowing a sub-stoichiometric level of t... More

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