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Apurinic/apyrimidinic endonuclease APE1 is required for PACAP-induced neuroprotection against global cerebral ischemia.

Abstract
Inducible DNA repair via the base-excision repair pathway is an important prosurvival mechanism activated in response to oxidative DNA damage. Elevated levels of the essential base-excision repair enzyme apurinic/apyrimidinic endonuclease 1 (APE1)/redox effector factor-1 correlate closely with neuronal survival against ischemic insults, depending on the CNS region, protective treatments, and degree of insult. However, the precise mechanisms by which this multifunctional protein affords protection and is activated by upstream signaling pathways in postischemic neurons are not well delineated. Here we show that intracerebral administration of pituitary adenylate cyclase-activating polypeptide (PACAP), an endogenously occurring small neuropeptide, induces expression of APE1 in hippocampal neurons. Induction of APE1 expression requires PKA- and p38-dependent phosphorylation of cAMP response-element binding and activating transcription factor 2, which leads to transactivation of the APE1 promoter. We further show that PACAP markedly reduces oxidative DNA stress and hippocampal CA1 neuronal death following transient global ischemia. These effects occurred, at least in part, via enhanced APE1 expression. Furthermore, the DNA repair function of APE1 was required for PACAP-mediated neuroprotection. Thus, induction of DNA repair enzymes may be a unique strategy for neuroprotection against hippocampal injury.
AuthorsR Anne Stetler, Yanqin Gao, R Suzanne Zukin, Peter S Vosler, Lili Zhang, Feng Zhang, Guodong Cao, Michael V L Bennett, Jun Chen
JournalProceedings of the National Academy of Sciences of the United States of America (Proc Natl Acad Sci U S A) Vol. 107 Issue 7 Pg. 3204-9 (Feb 16 2010) ISSN: 1091-6490 [Electronic] United States
PMID20133634 (Publication Type: Journal Article, Research Support, N.I.H., Extramural, Research Support, Non-U.S. Gov't)
Chemical References
  • Activating Transcription Factor 2
  • Cyclic AMP Response Element-Binding Protein
  • Pituitary Adenylate Cyclase-Activating Polypeptide
  • Luciferases
  • APEX1 protein, human
  • DNA-(Apurinic or Apyrimidinic Site) Lyase
Topics
  • Activating Transcription Factor 2 (metabolism)
  • Analysis of Variance
  • Animals
  • Apoptosis (physiology)
  • Brain Ischemia (prevention & control)
  • Chromatin Immunoprecipitation
  • Cyclic AMP Response Element-Binding Protein (metabolism)
  • DNA Repair (physiology)
  • DNA-(Apurinic or Apyrimidinic Site) Lyase (metabolism, physiology)
  • Electrophoretic Mobility Shift Assay
  • Gene Expression Regulation (physiology)
  • Hippocampus (cytology, metabolism)
  • Humans
  • Luciferases
  • Oxidative Stress (physiology)
  • Phosphorylation
  • Pituitary Adenylate Cyclase-Activating Polypeptide (metabolism)
  • Rats
  • Rats, Sprague-Dawley
  • Signal Transduction (physiology)

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