4.8 Article

DNA Sequence Alignment by Microhomology Sampling during Homologous Recombination

Journal

CELL
Volume 160, Issue 5, Pages 856-869

Publisher

CELL PRESS
DOI: 10.1016/j.cell.2015.01.029

Keywords

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Funding

  1. NIH [GM074739, RO1ES007061, CA146940]
  2. NSF [MCB-1154511]
  3. Div Of Molecular and Cellular Bioscience
  4. Direct For Biological Sciences [1154511] Funding Source: National Science Foundation

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Homologous recombination (HR) mediates the exchange of genetic information between sister or homologous chromatids. During HR, members of the RecA/Rad51 family of recombinases must somehow search through vast quantities of DNA sequence to align and pair single-strand DNA (ssDNA) with a homologous double-strand DNA (dsDNA) template. Here, we use single-molecule imaging to visualize Rad51 as it aligns and pairs homologous DNA sequences in real time. We show that Rad51 uses a length-based recognition mechanism while interrogating dsDNA, enabling robust kinetic selection of 8-nucleotide (nt) tracts of microhomology, which kinetically confines the search to sites with a high probability of being a homologous target. Successful pairing with a ninth nucleotide coincides with an additional reduction in binding free energy, and subsequent strand exchange occurs in precise 3-nt steps, reflecting the base triplet organization of the presynaptic complex. These findings provide crucial new insights into the physical and evolutionary underpinnings of DNA recombination.

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