7ujl Citations

Redβ177 annealase structure reveals details of oligomerization and λ Red-mediated homologous DNA recombination.

Abstract

The Redβ protein of the bacteriophage λ red recombination system is a model annealase which catalyzes single-strand annealing homologous DNA recombination. Here we present the structure of a helical oligomeric annealing intermediate of Redβ, consisting of N-terminal residues 1-177 bound to two complementary 27mer oligonucleotides, determined via cryogenic electron microscopy (cryo-EM) to a final resolution of 3.3 Å. The structure reveals a continuous binding groove which positions and stabilizes complementary DNA strands in a planar orientation to facilitate base pairing via a network of hydrogen bonding. Definition of the inter-subunit interface provides a structural basis for the propensity of Redβ to oligomerize into functionally significant long helical filaments, a trait shared by most annealases. Our cryo-EM structure and molecular dynamics simulations suggest that residues 133-138 form a flexible loop which modulates access to the binding groove. More than half a century after its discovery, this combination of structural and computational observations has allowed us to propose molecular mechanisms for the actions of the model annealase Redβ, a defining member of the Redβ/RecT protein family.

Articles - 7ujl mentioned but not cited (1)

  1. Redβ177 annealase structure reveals details of oligomerization and λ Red-mediated homologous DNA recombination. Newing TP, Brewster JL, Fitschen LJ, Bouwer JC, Johnston NP, Yu H, Tolun G. Nat Commun 13 5649 (2022)


Articles citing this publication (4)

  1. The cryo-EM structure of full-length RAD52 protein contains an undecameric ring. Kinoshita C, Takizawa Y, Saotome M, Ogino S, Kurumizaka H, Kagawa W. FEBS Open Bio 13 408-418 (2023)
  2. Structure of a RecT/Redβ family recombinase in complex with a duplex intermediate of DNA annealing. Caldwell BJ, Norris AS, Karbowski CF, Wiegand AM, Wysocki VH, Bell CE. Nat Commun 13 7855 (2022)
  3. Single-Stranded DNA-Binding Proteins Mediate DSB Repair and Effectively Improve CRISPR/Cas9 Genome Editing in Escherichia coli and Pseudomonas. Chai R, Zhang Q, Wu J, Shi Z, Li Y, Gao Y, Qi Y, Qiu L. Microorganisms 11 850 (2023)
  4. The Rad52 SSAP superfamily and new insight into homologous recombination. Al-Fatlawi A, Schroeder M, Stewart AF. Commun Biol 6 87 (2023)