Structural determinants for substrate binding and catalysis by the structure-specific endonuclease XPG

  • Hohl, Marcel
  • Thorel, Fabrizio
  • Clarkson, Stuart G.
  • Scharer, Orlando D.
Publication date
May 2003
Publisher
American Society for Biochemistry & Molecular Biology (ASBMB)
ISSN
0021-9258
Journal
Journal of Biological Chemistry

Abstract

XPG belongs to the Fen1 family of structure-specific nucleases and is responsible for the 3' endonucleolytic incision during mammalian nucleotide excision repair. In addition, it has ill-defined roles in the transcription-coupled repair of oxidative DNA damage and likely also in transcription that are independent of its nuclease activity. We have used DNA binding and footprinting assays with various substrates to gain insight into how XPG interacts with DNA. Ethylation interference footprinting revealed that XPG binds to its substrates through interaction with the phosphate backbone on one face of the helix, mainly to the double-stranded DNA. By comparing DNA binding and cleavage activity using single-/double-stranded DNA junction subs...

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