The crystal structure of the Thermus aquaticus DnaB helicase monomer
Open Access
- 1 July 2007
- journal article
- research article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 35 (14) , 4728-4736
- https://doi.org/10.1093/nar/gkm507
Abstract
The ring-shaped hexameric DnaB helicase unwinds duplex DNA at the replication fork of eubacteria. We have solved the crystal structure of the full-length Thermus aquaticus DnaB monomer, or possibly dimer, at 2.9 Å resolution. DnaB is a highly flexible two domain protein. The C-terminal domain exhibits a RecA-like core fold and contains all the conserved sequence motifs that are characteristic of the DnaB helicase family. The N-terminal domain contains an additional helical hairpin that makes it larger than previously appreciated. Several DnaB mutations that modulate its interaction with primase are found in this hairpin. The similarity in the fold of the DnaB N-terminal domain with that of the C-terminal helicase-binding domain (HBD) of the DnaG primase also includes this hairpin. Comparison of hexameric homology models of DnaB with the structure of the papillomavirus E1 helicase suggests the two helicases may function through different mechanisms despite their sharing a common ancestor.Keywords
This publication has 38 references indexed in Scilit:
- Bacillus subtilis Bacteriophage SPP1 G40P Helicase Lacking the N-terminal Domain Unwinds DNA BidirectionallyJournal of Molecular Biology, 2006
- In the Bacillus stearothermophilus DnaB-DnaG Complex, the Activities of the Two Proteins Are Modulated by Distinct but Overlapping Networks of ResiduesJournal of Bacteriology, 2006
- Helicases: amino acid sequence comparisons and structure-function relationshipsPublished by Elsevier ,2005
- Coot: model-building tools for molecular graphicsActa Crystallographica Section D-Biological Crystallography, 2004
- Unzipping Mechanism of the Double-stranded DNA Unwinding by a Hexameric Helicase: Quantitative Analysis of the Rate of the dsDNA Unwinding, Processivity and Kinetic Step-size of the Escherichia coli DnaB Helicase Using Rapid Quench-flow MethodJournal of Molecular Biology, 2004
- The design and implementation ofSnBversion 2.0Journal of Applied Crystallography, 1999
- Refinement of Macromolecular Structures by the Maximum-Likelihood MethodActa Crystallographica Section D-Biological Crystallography, 1997
- [20] Processing of X-ray diffraction data collected in oscillation modePublished by Elsevier ,1997
- Organization and evolution of bacterial and bacteriophage primase-helicase systemsJournal of Molecular Evolution, 1992
- The structure of the E. coli recA protein monomer and polymerNature, 1992