• Title of article

    Human Flap Endonuclease Structures, DNA Double-Base Flipping, and a Unified Understanding of the FEN1 Superfamily

  • Author/Authors

    Susan E. Tsutakawa، نويسنده , , Scott Classen، نويسنده , , Brian R. Chapados، نويسنده , , Andrew S. Arvai، نويسنده , , L. David Finger، نويسنده , , Grant Guenther، نويسنده , , Christopher G. Tomlinson، نويسنده , , Peter Thompson، نويسنده , , Altaf H. Sarker، نويسنده , , Binghui Shen، نويسنده , , Priscilla K. Cooper، نويسنده , , Jane A. Grasby، نويسنده , , Karl-Peter Hopfner and John A. Tainer، نويسنده ,

  • Issue Information
    هفته نامه با شماره پیاپی سال 2011
  • Pages
    14
  • From page
    198
  • To page
    211
  • Abstract
    Flap endonuclease (FEN1), essential for DNA replication and repair, removes RNA and DNA 5′ flaps. FEN1 5′ nuclease superfamily members acting in nucleotide excision repair (XPG), mismatch repair (EXO1), and homologous recombination (GEN1) paradoxically incise structurally distinct bubbles, ends, or Holliday junctions, respectively. Here, structural and functional analyses of human FEN1:DNA complexes show structure-specific, sequence-independent recognition for nicked dsDNA bent 100° with unpaired 3′ and 5′ flaps. Above the active site, a helical cap over a gateway formed by two helices enforces ssDNA threading and specificity for free 5′ ends. Crystallographic analyses of product and substrate complexes reveal that dsDNA binding and bending, the ssDNA gateway, and double-base unpairing flanking the scissile phosphate control precise flap incision by the two-metal-ion active site. Superfamily conserved motifs bind and open dsDNA; direct the target region into the helical gateway, permitting only nonbase-paired oligonucleotides active site access; and support a unified understanding of superfamily substrate specificity.
  • Journal title
    CELL
  • Serial Year
    2011
  • Journal title
    CELL
  • Record number

    1020659