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Involvement of the MAP kinase pathways in induction of GADD45 following UV radiation

  • Tong Tong
  • , Wenhong Fan
  • , Hongcheng Zhao
  • , Shunqian Jin
  • , Feiyue Fan
  • , Patricia Blanck
  • , Isaac Alomo
  • , Baskaran Rajasekaran
  • , Yusen Liu
  • , Nikki J. Holbrook
  • , Qimin Zhan

Research output: Contribution to journalArticlepeer-review

Abstract

The p53-regulated stress-inducible gene GADD45 has been shown to participate in cellular response to DNA damage, including cell cycle checkpoint, apoptosis, and DNA repair. However, the regulation of GADD45 expression is complex and may involve both p53-dependent and -independent pathways. Recent findings have demonstrated that the p53-independent induction of GADD45 is mainly regulated by the transcription factors Oct-1 and NF-YA, which directly bind to their consensus motifs located at the GADD45 promoter region. Here, we report that mitogen-activated protein (MAP) kinases are involved in the induction of the GADD45 promoter after DNA damage. Inhibition of JNK1 and ERK kinase activities either by expression of the dominant negative mutant JNK1 or by treatment with a selective chemical inhibitor of ERK (PD098059) substantially abrogates the UV induction of the GADD45 promoter. In contrast, a p38 kinase inhibitor (SB203580) has little effect on GADD45 induction by UV. In addition, the GADD45 promoter is strongly activated following expression of JNK1; Raf-1, which is an upstream activator of the ERK pathway; or MEK1, an upstream activator of both the ERK and the JNK pathways. Activation of the GADD45 promoter by MAP kinases does not require normal p53 function. Interestingly, the MAP kinase-regulatory effect appears to be mediated via OCT-1 and CAAT motifs since disruption of these sites abrogates activation of the GADD45 promoter by MAP kinases. Therefore, these findings indicate that the MAP kinase pathways are involved in the regulation of the p53-independent induction of the GADD45 promoter, probably via interaction with transcription factors that directly bind to OCT-1 and CAAT motifs.

Original languageEnglish
Pages (from-to)64-72
Number of pages9
JournalExperimental Cell Research
Volume269
Issue number1
DOIs
StatePublished - Sep 10 2001

Keywords

  • DNA damage
  • GADD45
  • Gene regulation
  • MAP kinases
  • Transcription factor

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