Perturbation of the yeast N-acetyltransferase NatB induces elevation of protein phosphorylation levels

<p>Abstract</p> <p>Background</p> <p>The addition of an acetyl group to protein N-termini is a widespread co-translational modification. NatB is one of the main N-acetyltransferases that targets a subset of proteins possessing an N-terminal methionine, but so far only a...

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Main Authors: Timmers Marc HTH, van Breukelen Bas, Pijnappel Pim WWM, Rosati Sara, Helbig Andreas O, Mohammed Shabaz, Slijper Monique, Heck Albert JR
Format: Article
Language:English
Published: BMC 2010-12-01
Series:BMC Genomics
Online Access:http://www.biomedcentral.com/1471-2164/11/685
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spelling doaj-26f3547447ed4eb186e25d1c0f7aa0be2020-11-25T01:37:17ZengBMCBMC Genomics1471-21642010-12-0111168510.1186/1471-2164-11-685Perturbation of the yeast N-acetyltransferase NatB induces elevation of protein phosphorylation levelsTimmers Marc HTHvan Breukelen BasPijnappel Pim WWMRosati SaraHelbig Andreas OMohammed ShabazSlijper MoniqueHeck Albert JR<p>Abstract</p> <p>Background</p> <p>The addition of an acetyl group to protein N-termini is a widespread co-translational modification. NatB is one of the main N-acetyltransferases that targets a subset of proteins possessing an N-terminal methionine, but so far only a handful of substrates have been reported. Using a yeast <it>nat3Δ </it>strain, deficient for the catalytic subunit of NatB, we employed a quantitative proteomics strategy to identify NatB substrates and to characterize downstream effects in <it>nat3Δ</it>.</p> <p>Results</p> <p>Comparing by proteomics WT and <it>nat3Δ </it>strains, using metabolic <sup>15</sup>N isotope labeling, we confidently identified 59 NatB substrates, out of a total of 756 detected acetylated protein N-termini. We acquired in-depth proteome wide measurements of expression levels of about 2580 proteins. Most remarkably, NatB deletion led to a very significant change in protein phosphorylation.</p> <p>Conclusions</p> <p>Protein expression levels change only marginally in between WT and <it>nat3Δ</it>. A comparison of the detected NatB substrates with their orthologous revealed remarkably little conservation throughout the phylogenetic tree. We further present evidence of post-translational N-acetylation on protein variants at non-annotated N-termini. Moreover, analysis of downstream effects in <it>nat3Δ </it>revealed elevated protein phosphorylation levels whereby the kinase Snf1p is likely a key element in this process.</p> http://www.biomedcentral.com/1471-2164/11/685
collection DOAJ
language English
format Article
sources DOAJ
author Timmers Marc HTH
van Breukelen Bas
Pijnappel Pim WWM
Rosati Sara
Helbig Andreas O
Mohammed Shabaz
Slijper Monique
Heck Albert JR
spellingShingle Timmers Marc HTH
van Breukelen Bas
Pijnappel Pim WWM
Rosati Sara
Helbig Andreas O
Mohammed Shabaz
Slijper Monique
Heck Albert JR
Perturbation of the yeast N-acetyltransferase NatB induces elevation of protein phosphorylation levels
BMC Genomics
author_facet Timmers Marc HTH
van Breukelen Bas
Pijnappel Pim WWM
Rosati Sara
Helbig Andreas O
Mohammed Shabaz
Slijper Monique
Heck Albert JR
author_sort Timmers Marc HTH
title Perturbation of the yeast N-acetyltransferase NatB induces elevation of protein phosphorylation levels
title_short Perturbation of the yeast N-acetyltransferase NatB induces elevation of protein phosphorylation levels
title_full Perturbation of the yeast N-acetyltransferase NatB induces elevation of protein phosphorylation levels
title_fullStr Perturbation of the yeast N-acetyltransferase NatB induces elevation of protein phosphorylation levels
title_full_unstemmed Perturbation of the yeast N-acetyltransferase NatB induces elevation of protein phosphorylation levels
title_sort perturbation of the yeast n-acetyltransferase natb induces elevation of protein phosphorylation levels
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2010-12-01
description <p>Abstract</p> <p>Background</p> <p>The addition of an acetyl group to protein N-termini is a widespread co-translational modification. NatB is one of the main N-acetyltransferases that targets a subset of proteins possessing an N-terminal methionine, but so far only a handful of substrates have been reported. Using a yeast <it>nat3Δ </it>strain, deficient for the catalytic subunit of NatB, we employed a quantitative proteomics strategy to identify NatB substrates and to characterize downstream effects in <it>nat3Δ</it>.</p> <p>Results</p> <p>Comparing by proteomics WT and <it>nat3Δ </it>strains, using metabolic <sup>15</sup>N isotope labeling, we confidently identified 59 NatB substrates, out of a total of 756 detected acetylated protein N-termini. We acquired in-depth proteome wide measurements of expression levels of about 2580 proteins. Most remarkably, NatB deletion led to a very significant change in protein phosphorylation.</p> <p>Conclusions</p> <p>Protein expression levels change only marginally in between WT and <it>nat3Δ</it>. A comparison of the detected NatB substrates with their orthologous revealed remarkably little conservation throughout the phylogenetic tree. We further present evidence of post-translational N-acetylation on protein variants at non-annotated N-termini. Moreover, analysis of downstream effects in <it>nat3Δ </it>revealed elevated protein phosphorylation levels whereby the kinase Snf1p is likely a key element in this process.</p>
url http://www.biomedcentral.com/1471-2164/11/685
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