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dc.contributor.authorZhang, Hong
dc.contributor.authorCohen, Stanley N.
dc.date2022-08-11T08:11:05.000
dc.date.accessioned2022-08-23T17:33:09Z
dc.date.available2022-08-23T17:33:09Z
dc.date.issued2004-12-03
dc.date.submitted2011-03-22
dc.identifier.citationGenes Dev. 2004 Dec 15;18(24):3028-40. Epub 2004 Dec 1. <a href="http://dx.doi.org/10.1101/gad.1253004">Link to article on publisher's site</a>
dc.identifier.issn0890-9369 (Linking)
dc.identifier.doi10.1101/gad.1253004
dc.identifier.pmid15574587
dc.identifier.urihttp://hdl.handle.net/20.500.14038/51104
dc.description.abstractProgressive telomere shortening activates replicative senescence, which prevents somatic cells from being propagated indefinitely in culture. The limitation of proliferative capacity imposed by replicative senescence is thought to contribute to both organismal aging and the prevention of tumor development. Here we report that up-regulation of Smurf2, an E3 ubiquitin ligase previously implicated in TGF-beta signaling, is a specific consequence of telomere attrition in human fibroblasts and that such up-regulation is sufficient to produce the senescence phenotype. Adventitious production of the Smurf2 protein in early passage fibroblasts at the same physiological level observed during telomere-mediated senescence resulted in proliferative arrest in a viable state, morphological and biochemical alterations characteristic of senescence, acquisition of senescence-specific alterations in gene expression, and reversal of cellular immortalization by telomerase. We show that the senescence-inducing actions of Smurf2 occur in the absence of detectable DNA damage or stress response, that Smurf2's effects require a novel function distinct from its E3 activity, that Smurf2 recruits the Rb and p53 pathways for senescence induction, and that while p21 is elevated by Smurf2, Smurf2-mediated senescence is independent of p21. Smurf2 is the first gene found to be both up-regulated by telomere attrition and sufficient to induce senescence.
dc.language.isoen_US
dc.relation<a href="http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?db=pubmed&cmd=Retrieve&list_uids=15574587&dopt=Abstract">Link to Article in PubMed</a>
dc.relation.urlhttp://dx.doi.org/10.1101/gad.1253004
dc.subjectBlotting, Northern
dc.subjectBlotting, Western
dc.subjectCell Aging
dc.subjectCell Line
dc.subjectFibroblasts
dc.subjectFluorescent Antibody Technique
dc.subjectGenetic Vectors
dc.subjectHumans
dc.subjectOligonucleotide Array Sequence Analysis
dc.subjectPlasmids
dc.subjectRetinoblastoma Protein
dc.subjectReverse Transcriptase Polymerase Chain Reaction
dc.subjectTelomere
dc.subjectTumor Suppressor Protein p53
dc.subjectUbiquitin-Protein Ligases
dc.subjectUp-Regulation
dc.subjectCell Biology
dc.titleSmurf2 up-regulation activates telomere-dependent senescence
dc.typeJournal Article
dc.source.journaltitleGenes and development
dc.source.volume18
dc.source.issue24
dc.identifier.legacycoverpagehttps://escholarship.umassmed.edu/zhang/3
dc.identifier.contextkey1893268
html.description.abstract<p>Progressive telomere shortening activates replicative senescence, which prevents somatic cells from being propagated indefinitely in culture. The limitation of proliferative capacity imposed by replicative senescence is thought to contribute to both organismal aging and the prevention of tumor development. Here we report that up-regulation of Smurf2, an E3 ubiquitin ligase previously implicated in TGF-beta signaling, is a specific consequence of telomere attrition in human fibroblasts and that such up-regulation is sufficient to produce the senescence phenotype. Adventitious production of the Smurf2 protein in early passage fibroblasts at the same physiological level observed during telomere-mediated senescence resulted in proliferative arrest in a viable state, morphological and biochemical alterations characteristic of senescence, acquisition of senescence-specific alterations in gene expression, and reversal of cellular immortalization by telomerase. We show that the senescence-inducing actions of Smurf2 occur in the absence of detectable DNA damage or stress response, that Smurf2's effects require a novel function distinct from its E3 activity, that Smurf2 recruits the Rb and p53 pathways for senescence induction, and that while p21 is elevated by Smurf2, Smurf2-mediated senescence is independent of p21. Smurf2 is the first gene found to be both up-regulated by telomere attrition and sufficient to induce senescence.</p>
dc.identifier.submissionpathzhang/3
dc.contributor.departmentDepartment of Cell Biology
dc.source.pages3028-40


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