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Single-molecule visualization of human RECQ5 interactions with single-stranded DNA recombination intermediates.
Xue, Chaoyou; Molnarova, Lucia; Steinfeld, Justin B; Zhao, Weixing; Ma, Chujian; Spirek, Mario; Kaniecki, Kyle; Kwon, Youngho; Belán, Ondrej; Krejci, Katerina; Boulton, Simon J; Sung, Patrick; Greene, Eric C; Krejci, Lumir.
Afiliação
  • Xue C; Department of Biochemistry & Molecular Biophysics, Columbia University, New York, NY 10032, USA.
  • Molnarova L; Department of Biology, Masaryk University, Brno 62500, Czech Republic.
  • Steinfeld JB; Department of Biochemistry & Molecular Biophysics, Columbia University, New York, NY 10032, USA.
  • Zhao W; Department of Biochemistry and Structural Biology, University of Texas Health Science Center at San Antonio, TX 78229, USA.
  • Ma C; Department of Biochemistry & Molecular Biophysics, Columbia University, New York, NY 10032, USA.
  • Spirek M; Department of Biology, Masaryk University, Brno 62500, Czech Republic.
  • Kaniecki K; Department of Biochemistry & Molecular Biophysics, Columbia University, New York, NY 10032, USA.
  • Kwon Y; Department of Biochemistry and Structural Biology, University of Texas Health Science Center at San Antonio, TX 78229, USA.
  • Belán O; DSB Repair Metabolism Lab, The Francis Crick Institute, Midland Road, London NW1 1AT, UK.
  • Krejci K; Department of Biology, Masaryk University, Brno 62500, Czech Republic.
  • Boulton SJ; International Clinical Research Center, St. Anne's University Hospital Brno, Brno 65691, Czech Republic.
  • Sung P; DSB Repair Metabolism Lab, The Francis Crick Institute, Midland Road, London NW1 1AT, UK.
  • Greene EC; Department of Biochemistry and Structural Biology, University of Texas Health Science Center at San Antonio, TX 78229, USA.
  • Krejci L; Department of Biochemistry & Molecular Biophysics, Columbia University, New York, NY 10032, USA.
Nucleic Acids Res ; 49(1): 285-305, 2021 01 11.
Article em En | MEDLINE | ID: mdl-33332547
ABSTRACT
RECQ5 is one of five RecQ helicases found in humans and is thought to participate in homologous DNA recombination by acting as a negative regulator of the recombinase protein RAD51. Here, we use kinetic and single molecule imaging methods to monitor RECQ5 behavior on various nucleoprotein complexes. Our data demonstrate that RECQ5 can act as an ATP-dependent single-stranded DNA (ssDNA) motor protein and can translocate on ssDNA that is bound by replication protein A (RPA). RECQ5 can also translocate on RAD51-coated ssDNA and readily dismantles RAD51-ssDNA filaments. RECQ5 interacts with RAD51 through protein-protein contacts, and disruption of this interface through a RECQ5-F666A mutation reduces translocation velocity by ∼50%. However, RECQ5 readily removes the ATP hydrolysis-deficient mutant RAD51-K133R from ssDNA, suggesting that filament disruption is not coupled to the RAD51 ATP hydrolysis cycle. RECQ5 also readily removes RAD51-I287T, a RAD51 mutant with enhanced ssDNA-binding activity, from ssDNA. Surprisingly, RECQ5 can bind to double-stranded DNA (dsDNA), but it is unable to translocate. Similarly, RECQ5 cannot dismantle RAD51-bound heteroduplex joint molecules. Our results suggest that the roles of RECQ5 in genome maintenance may be regulated in part at the level of substrate specificity.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: DNA de Cadeia Simples / Proteínas Motores Moleculares / RecQ Helicases / Recombinação Homóloga / Imagem Individual de Molécula Limite: Humans Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: DNA de Cadeia Simples / Proteínas Motores Moleculares / RecQ Helicases / Recombinação Homóloga / Imagem Individual de Molécula Limite: Humans Idioma: En Ano de publicação: 2021 Tipo de documento: Article