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Molecular basis for N-terminal acetylation by the heterodimeric NatA complex.

Nat Struct Mol Biol.. 2013-8; 
Glen Liszczak, Jacob M Goldberg, Håvard Foyn, E James Petersson, Thomas Arnesen, Ronen Marmorstein. Program in Gene Expression and Regulation, Wistar Institute, Philadelphia, Pennsylvania, USA; Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania, USA.
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Abstract

N-terminal acetylation is ubiquitous among eukaryotic proteins and controls a myriad of biological processes. Of the N-terminal acetyltransferases (NATs) that facilitate this cotranslational modification, the heterodimeric NatA complex has the most diversity for substrate selection and modifies the majority of all N-terminally acetylated proteins. Here, we report the X-ray crystal structure of the 100-kDa holo-NatA complex from Schizosaccharomyces pombe, in the absence and presence of a bisubstrate peptide-CoA-conjugate inhibitor, as well as the structure of the uncomplexed Naa10p catalytic subunit. The NatA-Naa15p auxiliary subunit contains 13 tetratricopeptide motifs and adopts a ring-like topology that wraps... More

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