Dual lysine and N-terminal acetyltransferases reveal the complexity underpinning protein acetylation

dc.contributor.authorWilly V Bienvenut
dc.contributor.authorAnnika Brünje
dc.contributor.authorJean‐Baptiste Boyer
dc.contributor.authorJens S Mühlenbeck
dc.contributor.authorGautier Bernal
dc.contributor.authorInes Lassowskat
dc.contributor.authorCyril Dian
dc.contributor.authorEric Linster
dc.contributor.authorTrinh V Dinh
dc.contributor.authorMinna M Koskela
dc.contributor.authorVincent Jung
dc.contributor.authorJulian Seidel
dc.contributor.authorLaura K Schyrba
dc.contributor.authorAiste Ivanauskaite
dc.contributor.authorJürgen Eirich
dc.contributor.authorRüdiger Hell
dc.contributor.authorDirk Schwarzer
dc.contributor.authorPaula Mulo
dc.contributor.authorMarkus Wirtz
dc.contributor.authorThierry Meinnel
dc.contributor.authorCarmela Giglione
dc.contributor.authorIris Finkemeier
dc.contributor.organizationfi=molekulaarinen kasvibiologia|en=Molecular Plant Biology|
dc.contributor.organization-code1.2.246.10.2458963.20.50535969575
dc.converis.publication-id49057789
dc.converis.urlhttps://research.utu.fi/converis/portal/Publication/49057789
dc.date.accessioned2022-10-27T12:12:30Z
dc.date.available2022-10-27T12:12:30Z
dc.description.abstractProtein acetylation is a highly frequent protein modification. However, comparatively little is known about its enzymatic machinery. N-alpha-acetylation (NTA) and epsilon-lysine acetylation (KA) are known to be catalyzed by distinct families of enzymes (NATs andKATs, respectively), although the possibility that the sameGCN5-relatedN-acetyltransferase (GNAT) can perform both functions has been debated. Here, we discovered a new family of plastid-localizedGNATs, which possess a dual specificity. All characterizedGNATfamily members display a number of unique features. Quantitative mass spectrometry analyses revealed that these enzymes exhibit both distinctKAand relaxedNTAspecificities. Furthermore, inactivation ofGNAT2 leads to significantNTAorKAdecreases of several plastid proteins, while proteins of other compartments were unaffected. The data indicate that these enzymes have specific protein targets and likely display partly redundant selectivity, increasing the robustness of the acetylation processin vivo. In summary, this study revealed a new layer of complexity in the machinery controlling this prevalent modification and suggests that other eukaryoticGNATs may also possess these previously underappreciated broader enzymatic activities.
dc.identifier.eissn1744-4292
dc.identifier.jour-issn1744-4292
dc.identifier.olddbid173924
dc.identifier.oldhandle10024/157018
dc.identifier.urihttps://www.utupub.fi/handle/11111/33190
dc.identifier.urnURN:NBN:fi-fe2021042822559
dc.language.isoen
dc.okm.affiliatedauthorKonert, Minna
dc.okm.affiliatedauthorMulo, Paula
dc.okm.affiliatedauthorIvanauskaite, Aiste
dc.okm.discipline1182 Biochemistry, cell and molecular biologyen_GB
dc.okm.discipline1182 Biokemia, solu- ja molekyylibiologiafi_FI
dc.okm.internationalcopublicationinternational co-publication
dc.okm.internationalityInternational publication
dc.okm.typeA1 ScientificArticle
dc.publisherWILEY
dc.publisher.countryUnited Kingdomen_GB
dc.publisher.countryBritanniafi_FI
dc.publisher.country-codeGB
dc.relation.articlenumberARTN e9464
dc.relation.doi10.15252/msb.20209464
dc.relation.ispartofjournalMolecular Systems Biology
dc.relation.issue7
dc.relation.volume16
dc.source.identifierhttps://www.utupub.fi/handle/10024/157018
dc.titleDual lysine and N-terminal acetyltransferases reveal the complexity underpinning protein acetylation
dc.year.issued2020

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