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N-terminal (Nt) acetylation, catalyzed by N-terminal acetyltransferases (NATs), has emerged as an important co-translational modification in eukaryotes, and involves the transfer of the acetyl moiety from acetyl-CoA (Ac-CoA) to the α-amino group of a nascent polypeptide. Here, we report the first gl...
ORGANISM(S): Saccharomyces cerevisiae (Baker's yeast) 
2018-09-07 | PXD004326 | Pride
N-terminal acetylation (NTA) is one of the most abundant protein modifications in eukaryotes and is catalysed in humans by seven N-acetyltransferases. In this study, we investigated the Arabidopsis thaliana NatB catalytic (NAA20) and auxiliary subunit (NAA25) and their influence on protein N-termina...
ORGANISM(S): Arabidopsis thaliana (Mouse-ear cress) 
2019-11-21 | PXD016209 | Pride
Protein acetylation is a universally conserved modification occurring on N-termini (N-Terminal acetylation, NTA). Although recent reports indicate that NTA occur frequently in plant plastids, little is known about the machinery involved in plastid acetylation and why these modifications are that fre...
ORGANISM(S): Escherichia coli 
2020-07-13 | PXD016205 | Pride
N-terminal acetylation is a conserved protein modification among eukaryotes, and the yeast Saccharomyces cerevisiae is a valuable model system for studying this modification. The enzymes responsible for the bulk of protein N-terminal acetylation in S. cerevisiae are the N-terminal acetyltransferases...
ORGANISM(S): Saccharomyces cerevisiae (Baker's yeast) 
2023-01-26 | PXD039544 | Pride
Protein acetylation is a key recurring co- and posttranslational modification. How different types of acetylation respond to the same environmental stress is unknown. A member of the newly discovered family of plastid acetyltransferases (GNAT2), which is featuring both lysine- and N-terminal acetyl...
ORGANISM(S): Arabidopsis Thaliana (mouse-ear Cress) 
N-terminal acetylation (NTA) is one of the most abundant protein modifications in eukaryotes and is catalysed in humans by seven N-acetyltransferases. AtNAA60 localizes to the plasma membrane in vivo by an α-helical membrane anchor at its C-terminus. In this study, we investigated the Arabidopsis th...
ORGANISM(S): Arabidopsis thaliana (Mouse-ear cress) 
2020-07-15 | PXD016494 | Pride
N-terminal acetylation is one of the most abundant protein modifications in eukaryotes and is catalysed in humans by seven N-terminal acetyltransferases. AtNAA50 interreact with the NatA complex (NAA10 and NAA15) to form the NatE complex. In this study, we investigated the Arabidopsis thaliana N-ter...
ORGANISM(S): Arabidopsis thaliana (Mouse-ear cress) 
2020-07-15 | PXD017770 | Pride
N-terminal acetylation is one of the most abundant protein modifications in eukaryotes and is catalysed in humans by seven N-terminal acetyltransferases. AtNAA60 is localized in vivo at the plasma membrane by an α-helical membrane anchor at its C-terminus. In this study, we investigated the Arabidop...
ORGANISM(S): Escherichia coli 
2020-07-15 | PXD016533 | Pride
Co-translational N-terminal (Nt-) acetylation of nascent polypeptides is catalyzed by N-terminal acetyltransferases (NATs). The very N-terminal amino acid sequence is the major factor determining whether or not a given protein is Nt-acetylated. In humans, six different NATs, denoted NatA-NatF, are i...
ORGANISM(S): Saccharomyces cerevisiae (Baker's yeast) 
2015-05-29 | PXD001437 | Pride
The X-linked lethal Ogden syndrome was the first reported human genetic disorder associated with a mutation in an N-terminal acetyltransferase gene. The affected males harbour a Ser37Pro mutation in the gene encoding hNaa10, the catalytic subunit of NatA, themajor human NAT. In order to understand t...
ORGANISM(S): Homo sapiens (Human) 
2016-04-12 | PXD001282 | Pride
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