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The Smc5/6 complex is a DNA loop-extruding motor.
Pradhan, Biswajit; Kanno, Takaharu; Umeda Igarashi, Miki; Loke, Mun Siong; Baaske, Martin Dieter; Wong, Jan Siu Kei; Jeppsson, Kristian; Björkegren, Camilla; Kim, Eugene.
Afiliación
  • Pradhan B; Max Planck Institute of Biophysics, Frankfurt am Main, Germany.
  • Kanno T; Department of Cell and Molecular Biology, Karolinska Institutet, Stockholm, Sweden.
  • Umeda Igarashi M; Department of Biosciences and Nutrition, Karolinska Institutet, Huddinge, Sweden.
  • Loke MS; Department of Cell and Molecular Biology, Karolinska Institutet, Stockholm, Sweden.
  • Baaske MD; Department of Biosciences and Nutrition, Karolinska Institutet, Huddinge, Sweden.
  • Wong JSK; Max Planck Institute of Biophysics, Frankfurt am Main, Germany.
  • Jeppsson K; Max Planck Institute of Biophysics, Frankfurt am Main, Germany.
  • Björkegren C; Max Planck Institute of Biophysics, Frankfurt am Main, Germany.
  • Kim E; Department of Cell and Molecular Biology, Karolinska Institutet, Stockholm, Sweden.
Nature ; 616(7958): 843-848, 2023 04.
Article en En | MEDLINE | ID: mdl-37076626
Structural maintenance of chromosomes (SMC) protein complexes are essential for the spatial organization of chromosomes1. Whereas cohesin and condensin organize chromosomes by extrusion of DNA loops, the molecular functions of the third eukaryotic SMC complex, Smc5/6, remain largely unknown2. Using single-molecule imaging, we show that Smc5/6 forms DNA loops by extrusion. Upon ATP hydrolysis, Smc5/6 reels DNA symmetrically into loops at a force-dependent rate of one kilobase pair per second. Smc5/6 extrudes loops in the form of dimers, whereas monomeric Smc5/6 unidirectionally translocates along DNA. We also find that the subunits Nse5 and Nse6 (Nse5/6) act as negative regulators of loop extrusion. Nse5/6 inhibits loop-extrusion initiation by hindering Smc5/6 dimerization but has no influence on ongoing loop extrusion. Our findings reveal functions of Smc5/6 at the molecular level and establish DNA loop extrusion as a conserved mechanism among eukaryotic SMC complexes.
Asunto(s)

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Saccharomyces cerevisiae / ADN de Hongos / Cromosomas Fúngicos / Proteínas de Ciclo Celular Idioma: En Revista: Nature Año: 2023 Tipo del documento: Article País de afiliación: Alemania

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Saccharomyces cerevisiae / ADN de Hongos / Cromosomas Fúngicos / Proteínas de Ciclo Celular Idioma: En Revista: Nature Año: 2023 Tipo del documento: Article País de afiliación: Alemania