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Loss of Nat4 and its associated histone H4 N-terminal acetylation mediates calorie restriction-induced longevity
D. Molina-Serrano, V. Schiza, C. Demosthenous, E. Stavrou, J. Oppelt, D. Kyriakou, W. Liu, G. Zisser, H. Bergler, W. Dang, A. Kirmizis,
Jazyk angličtina Země Anglie, Velká Británie
Typ dokumentu časopisecké články
NLK
Free Medical Journals
od 2000 do Před 1 rokem
Nature Open Access
od 2014-04-01
PubMed Central
od 2000
Europe PubMed Central
od 2000 do Před 1 rokem
Open Access Digital Library
od 2000-07-01
Medline Complete (EBSCOhost)
od 2000-07-01 do Před 1 rokem
Wiley Free Content
od 2000 do Před 1 rokem
Springer Nature OA/Free Journals
od 2014-04-01
PubMed
27799288
DOI
10.15252/embr.201642540
Knihovny.cz E-zdroje
- MeSH
- acetylace MeSH
- aktivace transkripce MeSH
- časové faktory MeSH
- chromatin metabolismus MeSH
- dlouhověkost MeSH
- down regulace MeSH
- histonacetyltransferasy metabolismus MeSH
- histony metabolismus MeSH
- kalorická restrikce * MeSH
- N-terminální acetyltransferasa D nedostatek genetika fyziologie MeSH
- nikotinamidasa genetika metabolismus MeSH
- posttranslační úpravy proteinů MeSH
- regulace genové exprese u hub * MeSH
- Saccharomyces cerevisiae - proteiny genetika metabolismus fyziologie MeSH
- Saccharomyces cerevisiae genetika fyziologie MeSH
- stanovení celkové genové exprese MeSH
- Publikační typ
- časopisecké články MeSH
Changes in histone modifications are an attractive model through which environmental signals, such as diet, could be integrated in the cell for regulating its lifespan. However, evidence linking dietary interventions with specific alterations in histone modifications that subsequently affect lifespan remains elusive. We show here that deletion of histone N-alpha-terminal acetyltransferase Nat4 and loss of its associated H4 N-terminal acetylation (N-acH4) extend yeast replicative lifespan. Notably, nat4Δ-induced longevity is epistatic to the effects of calorie restriction (CR). Consistent with this, (i) Nat4 expression is downregulated and the levels of N-acH4 within chromatin are reduced upon CR, (ii) constitutive expression of Nat4 and maintenance of N-acH4 levels reduces the extension of lifespan mediated by CR, and (iii) transcriptome analysis indicates that nat4Δ largely mimics the effects of CR, especially in the induction of stress-response genes. We further show that nicotinamidase Pnc1, which is typically upregulated under CR, is required for nat4Δ-mediated longevity. Collectively, these findings establish histone N-acH4 as a regulator of cellular lifespan that links CR to increased stress resistance and longevity.
Department of Biological Sciences University of Cyprus Nicosia Cyprus
Huffington Center on Aging Baylor College of Medicine Houston TX USA
Institut für Molekulare Biowissenschaften Karl Franzens Universität Graz Austria
Citace poskytuje Crossref.org
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