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Gartner, Anton
DNA Damage Response and Genetic Toxicology
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Sirtuin/Sir2 phylogeny, evolutionary considerations and structural conservation

Author(s)
Greiss, SebastianGartner, Anton
Issued Date
2009-11
DOI
10.1007/s10059-009-0169-x
URI
https://scholarworks.unist.ac.kr/handle/201301/31003
Fulltext
https://link.springer.com/article/10.1007%2Fs10059-009-0169-x
Citation
MOLECULES AND CELLS, v.28, no.5, pp.407 - 415
Abstract
The sirtuins are a protein family named after the first identified member, S. cerevisiae Sir2p. Sirtuins are protein deacetylases whose activity is dependent on NAD(+) as a cosubstrate. They are structurally defined by two central domains that together form a highly conserved catalytic center, which catalyzes the transfer of an acetyl moiety from acetyllysine to NAD(+), yielding nicotinamide, the unique metabolite O-acetyl-ADP-ribose and deacetylated lysine. One or more sirtuins are present in virtually all species from bacteria to mammals. Here we describe a phylogenetic analysis of sirtuins. Based on their phylogenetic relationship, sirtuins can be grouped into over a dozen classes and subclasses. Humans, like most vertebrates, have seven sirtuins: SIRT1-SIRT7. These function in diverse cellular pathways, regulating transcriptional repression, aging, metabolism, DNA damage responses and apoptosis. We show that these seven sirtuins arose early during animal evolution. Conserved residues cluster around the catalytic center of known sirtuin family members.
Publisher
KOREAN SOC MOLECULAR & CELLULAR BIOLOGY
ISSN
1016-8478
Keyword
DEPENDENT PROTEIN DEACETYLASESPOSITION-EFFECT VARIEGATIONSACCHAROMYCES-CEREVISIAECALORIE RESTRICTIONHISTONE DEACETYLASESIRT1 DEACETYLASECELL-SURVIVALLIFE-SPANHISTONE/PROTEIN DEACETYLASESADP-RIBOSYLTRANSFERASE

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