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The C-terminal domain of the Uup protein is a DNA-binding coiled coil motif

  • Ludovic Carlier*
  • , A. Sander Haase
  • , Monica Y. Burgos Zepeda
  • , Elie Dassa
  • , Olivier Lequin*
  • *Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

The bacterial Uup protein belongs to the REG subfamily of soluble ATP-binding cassette (ABC) ATPases, and is implicated in precise excision of transposons. In Escherichia coli, the uup gene encodes a 72kDa polypeptide that comprises two ABC domains, separated by a linker region, and a 12kDa C-terminal domain (CTD). Uup binds double-stranded DNA with no sequence specificity, and we previously demonstrated that the CTD domain is a crucial region that participates in DNA-binding activity. We report herein the NMR structure of Uup CTD, consisting of an intramolecular antiparallel two-stranded coiled coil motif. Structural comparison with analogous coiled coil domains reveals that Uup CTD contains an atypical 310-helix in the α-hairpin region that contributes to the hydrophobic core. Using NMR titration experiments, we identified residues of the CTD domain involved in the binding to double-stranded DNA. These residues are located on two opposite surfaces at the base of the coiled coil, formed by the N- and C-terminal extremities, where a strictly conserved proline residue induces an overwinding of the coiled coil. Finally, preliminary analysis of NMR spectra recorded on distinct Uup constructs precludes a fully flexible positioning of the CTD domain in full-length Uup. These structural data are the first reported for a non-ATPase domain within ABC REG subfamily.

Original languageEnglish
Pages (from-to)577-584
Number of pages8
JournalJournal of structural biology
Volume180
Issue number3
Early online date17 Sept 2012
DOIs
Publication statusPublished - Dec 2012
Externally publishedYes

Keywords

  • n/a OA procedure
  • Coiled coil
  • NMR
  • Non specific DNA binding
  • REG subfamily
  • Uup
  • ABC ATPase

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