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Oligomeric complexes formed by Redß single strand annealing protein in its different DNA bound states.
Caldwell, Brian J; Norris, Andrew; Zakharova, Ekaterina; Smith, Christopher E; Wheat, Carter T; Choudhary, Deepanshu; Sotomayor, Marcos; Wysocki, Vicki H; Bell, Charles E.
Afiliación
  • Caldwell BJ; Ohio State Biochemistry Program, The Ohio State University, Columbus, OH 43210, USA.
  • Norris A; Department of Biological Chemistry and Pharmacology, The Ohio State University, Columbus, OH 43210, USA.
  • Zakharova E; Department of Chemistry and Biochemistry, The Ohio State University, Columbus, OH 43210, USA.
  • Smith CE; Department of Biological Chemistry and Pharmacology, The Ohio State University, Columbus, OH 43210, USA.
  • Wheat CT; Ohio State Biochemistry Program, The Ohio State University, Columbus, OH 43210, USA.
  • Choudhary D; Department of Biological Chemistry and Pharmacology, The Ohio State University, Columbus, OH 43210, USA.
  • Sotomayor M; Ohio State Biochemistry Program, The Ohio State University, Columbus, OH 43210, USA.
  • Wysocki VH; Department of Biological Chemistry and Pharmacology, The Ohio State University, Columbus, OH 43210, USA.
  • Bell CE; Department of Chemistry and Biochemistry, The Ohio State University, Columbus, OH 43210, USA.
Nucleic Acids Res ; 49(6): 3441-3460, 2021 04 06.
Article en En | MEDLINE | ID: mdl-33693865
ABSTRACT
Redß is a single strand annealing protein from bacteriophage λ that binds loosely to ssDNA, not at all to pre-formed dsDNA, but tightly to a duplex intermediate of annealing. As viewed by electron microscopy, Redß forms oligomeric rings on ssDNA substrate, and helical filaments on the annealed duplex intermediate. However, it is not clear if these are the functional forms of the protein in vivo. We have used size-exclusion chromatography coupled with multi-angle light scattering, analytical ultracentrifugation and native mass spectrometry (nMS) to characterize the size of the oligomers formed by Redß in its different DNA-bound states. The nMS data, which resolve species with the highest resolution, reveal that Redß forms an oligomer of 12 subunits in the absence of DNA, complexes ranging from 4 to 14 subunits on 38-mer ssDNA, and a much more distinct and stable complex of 11 subunits on 38-mer annealed duplex. We also measure the concentration of Redß in cells active for recombination and find it to range from 7 to 27 µM. Collectively, these data provide new insights into the dynamic nature of the complex on ssDNA, and the more stable and defined complex on annealed duplex.
Asunto(s)

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Proteínas Virales / ADN de Cadena Simple / Bacteriófago lambda / Proteínas de Unión al ADN Idioma: En Año: 2021 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Proteínas Virales / ADN de Cadena Simple / Bacteriófago lambda / Proteínas de Unión al ADN Idioma: En Año: 2021 Tipo del documento: Article