4.7 Article

The heat shock transcription factor Hsf1 is downregulated in DNA damage-associated senescence, contributing to the maintenance of senescence phenotype

Journal

AGING CELL
Volume 11, Issue 4, Pages 617-627

Publisher

WILEY
DOI: 10.1111/j.1474-9726.2012.00827.x

Keywords

heat shock response; Hsp70; HuR; inflammation; p38; p53; SIRT1

Funding

  1. NCI NIH HHS [R01 CA081244] Funding Source: Medline
  2. NIA NIH HHS [R21 AG032414] Funding Source: Medline
  3. NIEHS NIH HHS [R01 ES020395] Funding Source: Medline
  4. NINDS NIH HHS [R21 NS066108, R21 NS073679, R01 NS060872, R01 NS041786] Funding Source: Medline

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Heat shock response (HSR) that protects cells from proteotoxic stresses is downregulated in aging, as well as upon replicative senescence of cells in culture. Here we demonstrate that HSR is suppressed in fibroblasts from the patients with segmental progerioid Werner Syndrome, which undergo premature senescence. Similar suppression of HSR was seen in normal fibroblasts, which underwent senescence in response to DNA damaging treatments. The major DNA-damage-induced signaling (DDS) pathways p53p21 and p38-NF-kB-SASP contributed to the HSR suppression. The HSR suppression was associated with inhibition of both activity and transcription of the heat shock transcription factor Hsf1. This inhibition in large part resulted from the downregulation of SIRT1, which in turn was because of decrease in the expression of the translation regulator HuR. Importantly, we uncovered a positive feedback regulation, where suppression of Hsf1 further activates the p38NF-?B-SASP pathway, which in turn promotes senescence. Overexpression of Hsf1 inhibited the p38NF?B-SASP pathway and partially relieved senescence. Therefore, downregulation of Hsf1 plays an important role in the development or in the maintenance of DNA damage signaling-induced cell senescence.

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