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Molecular Basis for SMC Rod Formation and Its Dissolution upon DNA Binding

SMC condensin complexes are central modulators of chromosome superstructure in all branches of life. Their SMC subunits form a long intramolecular coiled coil, which connects a constitutive “hinge” dimerization domain with an ATP-regulated “head” dimerization module. Here, we address the structural...

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Autores principales: Soh, Young-Min, Bürmann, Frank, Shin, Ho-Chul, Oda, Takashi, Jin, Kyeong Sik, Toseland, Christopher P., Kim, Cheolhee, Lee, Hansol, Kim, Soo Jin, Kong, Min-Seok, Durand-Diebold, Marie-Laure, Kim, Yeon-Gil, Kim, Ho Min, Lee, Nam Ki, Sato, Mamoru, Oh, Byung-Ha, Gruber, Stephan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4306524/
https://www.ncbi.nlm.nih.gov/pubmed/25557547
http://dx.doi.org/10.1016/j.molcel.2014.11.023
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author Soh, Young-Min
Bürmann, Frank
Shin, Ho-Chul
Oda, Takashi
Jin, Kyeong Sik
Toseland, Christopher P.
Kim, Cheolhee
Lee, Hansol
Kim, Soo Jin
Kong, Min-Seok
Durand-Diebold, Marie-Laure
Kim, Yeon-Gil
Kim, Ho Min
Lee, Nam Ki
Sato, Mamoru
Oh, Byung-Ha
Gruber, Stephan
author_facet Soh, Young-Min
Bürmann, Frank
Shin, Ho-Chul
Oda, Takashi
Jin, Kyeong Sik
Toseland, Christopher P.
Kim, Cheolhee
Lee, Hansol
Kim, Soo Jin
Kong, Min-Seok
Durand-Diebold, Marie-Laure
Kim, Yeon-Gil
Kim, Ho Min
Lee, Nam Ki
Sato, Mamoru
Oh, Byung-Ha
Gruber, Stephan
author_sort Soh, Young-Min
collection PubMed
description SMC condensin complexes are central modulators of chromosome superstructure in all branches of life. Their SMC subunits form a long intramolecular coiled coil, which connects a constitutive “hinge” dimerization domain with an ATP-regulated “head” dimerization module. Here, we address the structural arrangement of the long coiled coils in SMC complexes. We unequivocally show that prokaryotic Smc-ScpAB, eukaryotic condensin, and possibly also cohesin form rod-like structures, with their coiled coils being closely juxtaposed and accurately anchored to the hinge. Upon ATP-induced binding of DNA to the hinge, however, Smc switches to a more open configuration. Our data suggest that a long-distance structural transition is transmitted from the Smc head domains to regulate Smc-ScpAB’s association with DNA. These findings uncover a conserved architectural theme in SMC complexes, provide a mechanistic basis for Smc’s dynamic engagement with chromosomes, and offer a molecular explanation for defects in Cornelia de Lange syndrome.
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spelling pubmed-43065242015-01-28 Molecular Basis for SMC Rod Formation and Its Dissolution upon DNA Binding Soh, Young-Min Bürmann, Frank Shin, Ho-Chul Oda, Takashi Jin, Kyeong Sik Toseland, Christopher P. Kim, Cheolhee Lee, Hansol Kim, Soo Jin Kong, Min-Seok Durand-Diebold, Marie-Laure Kim, Yeon-Gil Kim, Ho Min Lee, Nam Ki Sato, Mamoru Oh, Byung-Ha Gruber, Stephan Mol Cell Article SMC condensin complexes are central modulators of chromosome superstructure in all branches of life. Their SMC subunits form a long intramolecular coiled coil, which connects a constitutive “hinge” dimerization domain with an ATP-regulated “head” dimerization module. Here, we address the structural arrangement of the long coiled coils in SMC complexes. We unequivocally show that prokaryotic Smc-ScpAB, eukaryotic condensin, and possibly also cohesin form rod-like structures, with their coiled coils being closely juxtaposed and accurately anchored to the hinge. Upon ATP-induced binding of DNA to the hinge, however, Smc switches to a more open configuration. Our data suggest that a long-distance structural transition is transmitted from the Smc head domains to regulate Smc-ScpAB’s association with DNA. These findings uncover a conserved architectural theme in SMC complexes, provide a mechanistic basis for Smc’s dynamic engagement with chromosomes, and offer a molecular explanation for defects in Cornelia de Lange syndrome. Cell Press 2015-01-22 /pmc/articles/PMC4306524/ /pubmed/25557547 http://dx.doi.org/10.1016/j.molcel.2014.11.023 Text en © 2015 The Authors http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/).
spellingShingle Article
Soh, Young-Min
Bürmann, Frank
Shin, Ho-Chul
Oda, Takashi
Jin, Kyeong Sik
Toseland, Christopher P.
Kim, Cheolhee
Lee, Hansol
Kim, Soo Jin
Kong, Min-Seok
Durand-Diebold, Marie-Laure
Kim, Yeon-Gil
Kim, Ho Min
Lee, Nam Ki
Sato, Mamoru
Oh, Byung-Ha
Gruber, Stephan
Molecular Basis for SMC Rod Formation and Its Dissolution upon DNA Binding
title Molecular Basis for SMC Rod Formation and Its Dissolution upon DNA Binding
title_full Molecular Basis for SMC Rod Formation and Its Dissolution upon DNA Binding
title_fullStr Molecular Basis for SMC Rod Formation and Its Dissolution upon DNA Binding
title_full_unstemmed Molecular Basis for SMC Rod Formation and Its Dissolution upon DNA Binding
title_short Molecular Basis for SMC Rod Formation and Its Dissolution upon DNA Binding
title_sort molecular basis for smc rod formation and its dissolution upon dna binding
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4306524/
https://www.ncbi.nlm.nih.gov/pubmed/25557547
http://dx.doi.org/10.1016/j.molcel.2014.11.023
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