Curated Information
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Home > Curated Information Page > PubMed Id: 23431171
Rokudai S, et al. (2013) MOZ increases p53 acetylation and premature senescence through its complex formation with PML. Proc Natl Acad Sci U S A 110, 3895-900 23431171
This page summarizes selected information from the record referenced above and curated into PhosphoSitePlus®, a comprehensive online resource for the study of protein post-translational modifications (NAR, 2015, 43:D512-20). To learn more about the scope of PhosphoSitePlus®, click here.
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T369-p - MYST3 (human)
Modsite: RGRKRKItLSSQSAS SwissProt Entrez-Gene
Orthologous residues
MYST3 (human): T369‑p, MYST3 (mouse): T369‑p, MYST3 (rat): T369‑p
Upstream Regulation
Potential in vivo enzymes for site: 
Type Enzyme Evidence Notes
KINASE Akt1 (human)
Downstream Regulation
Effect of modification (function):  acetylation

K120-ac - p53 (human)
Modsite: FLhSGTAkSVTCTyS SwissProt Entrez-Gene
Orthologous residues
p53 (human): K120‑ac, p53 iso2 (human): K120‑ac, p53 iso4 (human): K81‑ac, p53 (mouse): K117‑ac, p53 iso2 (mouse): K117‑ac, p53 (rat): K118‑ac, p53 (rabbit): K117‑ac, p53 (green monkey): K120‑ac
Upstream Regulation
Potential in vivo enzymes for site: 
Type Enzyme Evidence Notes
ACETYLTRANSFERASE MYST3 (human)

K382-ac - p53 (human)
Modsite: QstsRHkkLMFktEG SwissProt Entrez-Gene
Orthologous residues
p53 (human): K382‑ac, p53 iso2 (human): , p53 iso4 (human): K343‑ac, p53 (mouse): K379‑ac, p53 iso2 (mouse): , p53 (rat): K380‑ac, p53 (rabbit): K380‑ac, p53 (green monkey): K382‑ac
Upstream Regulation
Potential in vivo enzymes for site: 
Type Enzyme Evidence Notes
ACETYLTRANSFERASE MYST3 (human)