RecOR complex including RecR N-N dimer and RecO monomer displays a high affinity for ssDNA.

Nucleic Acids Res

National Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China.

Published: November 2012

AI Article Synopsis

  • - RecR is a key protein in the RecFOR pathway that works with RecO and RecF to aid in the formation of RecA nucleoprotein filaments and facilitate homologous pairing during DNA repair processes.
  • - Structural studies of the TTERecR protein reveal that it forms a ring-shaped tetramer consisting of N-N dimers that interact through their C-terminal regions, which is vital for its function in DNA repair.
  • - TTERecR does not effectively bind to single-stranded DNA (ssDNA) and only very weakly to double-stranded DNA, while its complex with TTERecO shows a strong preference for ssDNA, suggesting a specific role in DNA interaction during the recombination process.

Article Abstract

RecR is an important recombination mediator protein in the RecFOR pathway. RecR together with RecO and RecF facilitates RecA nucleoprotein filament formation and homologous pairing. Structural and biochemical studies of Thermoanaerobacter tengcongensis RecR (TTERecR) and its series mutants revealed that TTERecR uses the N-N dimer as a basic functional unit to interact with TTERecO monomer. Two TTERecR N-N dimers form a ring-shaped tetramer via an interaction between their C-terminal regions. The tetramer is a result of crystallization only. Hydrophobic interactions between the entire helix-hairpin-helix domains within the N-terminal regions of two TTERecR monomers are necessary for formation of a RecR functional N-N dimer. The TTERecR N-N dimer conformation also affects formation of a hydrophobic patch, which creates a binding site for TTERecO in the TTERecR Toprim domain. In addition, we demonstrate that TTERecR does not bind single-stranded DNA (ssDNA) and binds double-stranded DNA very weakly, whereas TTERecOR complex can stably bind DNA, with a higher affinity for ssDNA than double-stranded DNA. Based on these results, we propose an interaction model for the RecOR:ssDNA complex.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3510498PMC
http://dx.doi.org/10.1093/nar/gks889DOI Listing

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