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Interaction of human apurinic endonuclease and DNA polymerase β in the base excision repair pathway

  • Richard A.O. Bennett
  • , David M. Wilson
  • , Donny Wong
  • , Bruce Demple
  • Harvard University
  • Lawrence Livermore National Laboratory

Research output: Contribution to journalArticlepeer-review

344 Scopus citations

Abstract

Mutagenic abasic (AP) sites are generated directly by DNA-damaging agents or by DNA glycosylases acting in base excision repair. AP sites are corrected via incision by AP endonucleases, removal of deoxyribose 5- phosphate, repair synthesis, and ligation. Mammalian DNA polymerase β (Polβ) carries out most base excision repair synthesis and also can excise deoxyribose 5-phosphate after AP endonuclease incision. Yeast two-hybrid analysis now indicates protein-protein contact between Polβ and human AP endonuclease (Ape protein). In vitro, binding of Ape protein to uncleaved AP sites loads Polβ into a ternary complex with Ape and the AP-DNA. After incision by Ape, only Polβ exhibits stable DNA binding. Kinetic experiments indicated that Ape accelerates the excision of 5'-terminal deoxyribose 5- phosphate by Polβ. Thus, the two central players of the base excision repair pathway are coordinated in sequential reactions.

Original languageEnglish
Pages (from-to)7166-7169
Number of pages4
JournalProceedings of the National Academy of Sciences of the United States of America
Volume94
Issue number14
DOIs
StatePublished - Jul 8 1997

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