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PredicateObject
rdf:type
lifeskim:mentions
pubmed:issue
13
pubmed:dateCreated
2005-6-20
pubmed:abstractText
Posttranslational modification of the tumor suppressor p53 plays important roles in regulating its stability and activity. Six lysine residues at the p53 C terminus can be posttranslationally modified by various mechanisms, including acetylation, ubiquitination, neddylation, methylation, and sumoylation. Previous cell line transfection studies show that ubiquitination of these lysine residues is required for ubiquitin-dependent degradation of p53. In addition, biochemical and cell line studies suggested that p53 acetylation at the C terminus might stabilize p53 and activate its transcriptional activities. To investigate the physiological functional outcome of these C-terminal modifications in regulating p53 stability and activity, we introduced missense mutations (lysine to arginine) at the six lysine residues (K6R) into the endogenous p53 gene in mouse embryonic stem (ES) cells. The K6R mutation prevents all posttranslational modifications at these sites but conserves the structure of p53. In contrast to conclusions of previous studies, analysis of p53 stability in K6R ES cells, mouse embryonic fibroblasts, and thymocytes showed normal p53 stabilization in K6R cells both before and after DNA damage, indicating that ubiquitination of these lysine residues is not required for efficient p53 degradation. However, p53-dependent gene expression was impaired in K6R ES cells and thymocytes in a promoter-specific manner after DNA damage, indicating that the net outcome of the posttranslational modifications at the C terminus is to activate p53 transcriptional activities after DNA damage.
pubmed:grant
pubmed:commentsCorrections
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pubmed:language
eng
pubmed:journal
pubmed:citationSubset
IM
pubmed:chemical
pubmed:status
MEDLINE
pubmed:month
Jul
pubmed:issn
0270-7306
pubmed:author
pubmed:issnType
Print
pubmed:volume
25
pubmed:owner
NLM
pubmed:authorsComplete
Y
pubmed:pagination
5389-95
pubmed:dateRevised
2009-11-18
pubmed:meshHeading
pubmed-meshheading:15964796-Amino Acid Sequence, pubmed-meshheading:15964796-Amino Acid Substitution, pubmed-meshheading:15964796-Animals, pubmed-meshheading:15964796-Arginine, pubmed-meshheading:15964796-Blotting, Western, pubmed-meshheading:15964796-Cells, Cultured, pubmed-meshheading:15964796-DNA Damage, pubmed-meshheading:15964796-Gene Expression Regulation, pubmed-meshheading:15964796-Genes, p53, pubmed-meshheading:15964796-Mice, pubmed-meshheading:15964796-Mutation, Missense, pubmed-meshheading:15964796-Polymerase Chain Reaction, pubmed-meshheading:15964796-Promoter Regions, Genetic, pubmed-meshheading:15964796-Protein Processing, Post-Translational, pubmed-meshheading:15964796-Stem Cells, pubmed-meshheading:15964796-Thymus Gland, pubmed-meshheading:15964796-Transcription, Genetic, pubmed-meshheading:15964796-Tumor Suppressor Protein p53, pubmed-meshheading:15964796-Ubiquitin
pubmed:year
2005
pubmed:articleTitle
Functional analysis of the roles of posttranslational modifications at the p53 C terminus in regulating p53 stability and activity.
pubmed:affiliation
Section of Molecular Biology, Division of Biological Sciences, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92093-0322, USA.
pubmed:publicationType
Journal Article, Research Support, U.S. Gov't, P.H.S.
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