The Yeast N α -Acetyltransferase NatA Is Quantitatively Anchored to the Ribosome and Interacts with Nascent Polypeptides

Author:

Gautschi Matthias1,Just Sören1,Mun Andrej1,Ross Suzanne1,Rücknagel Peter1,Dubaquié Yves2,Ehrenhofer-Murray Ann3,Rospert Sabine14

Affiliation:

1. Max Planck Research Unit “Enzymology of Protein Folding,” D-06120 Halle

2. Proteomics Department, Bristol-Myers Squibb, Princeton, New Jersey 08543-5400

3. Otto Warburg Laboratory, Max Planck Institute of Molecular Genetics, D-14195 Berlin, Germany

4. Institut für Biochemie und Molekularbiologie, Universität Freiburg, D-79104 Freiburg

Abstract

ABSTRACT The majority of cytosolic proteins in eukaryotes contain a covalently linked acetyl moiety at their very N terminus. The mechanism by which the acetyl moiety is efficiently transferred to a large variety of nascent polypeptides is currently only poorly understood. Yeast N α -acetyltransferase NatA, consisting of the known subunits Nat1p and the catalytically active Ard1p, recognizes a wide range of sequences and is thought to act cotranslationally. We found that NatA was quantitatively bound to ribosomes via Nat1p and contained a previously unrecognized third subunit, the N α -acetyltransferase homologue Nat5p. Nat1p not only anchored Ard1p and Nat5p to the ribosome but also was in close proximity to nascent polypeptides, independent of whether they were substrates for N α -acetylation or not. Besides Nat1p, NAC (nascent polypeptide-associated complex) and the Hsp70 homologue Ssb1/2p interact with a variety of nascent polypeptides on the yeast ribosome. A direct comparison revealed that Nat1p required longer nascent polypeptides for interaction than NAC and Ssb1/2p. Δ nat1 or Δ ard1 deletion strains were temperature sensitive and showed derepression of silent mating type loci while Δ nat5 did not display any obvious phenotype. Temperature sensitivity and derepression of silent mating type loci caused by Δ nat1 or Δ ard1 were partially suppressed by overexpression of SSB1. The combination of data suggests that Nat1p presents the N termini of nascent polypeptides for acetylation and might serve additional roles during protein synthesis.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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