Cryo-EM structures of holo condensin reveal a subunit flip-flop mechanism

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作者
Byung-Gil Lee
Fabian Merkel
Matteo Allegretti
Markus Hassler
Christopher Cawood
Léa Lecomte
Francis J. O’Reilly
Ludwig R. Sinn
Pilar Gutierrez-Escribano
Marc Kschonsak
Sol Bravo
Takanori Nakane
Juri Rappsilber
Luis Aragon
Martin Beck
Jan Löwe
Christian H. Haering
机构
[1] MRC Laboratory of Molecular Biology,Cell Biology and Biophysics Unit
[2] European Molecular Biology Laboratory (EMBL),Structural and Computational Biology Unit
[3] Collaboration for joint PhD degree between EMBL and Heidelberg University,Wellcome Centre for Cell Biology
[4] Faculty of Biosciences,undefined
[5] European Molecular Biology Laboratory (EMBL),undefined
[6] Biocenter,undefined
[7] Julius-Maximilians-Universität Würzburg,undefined
[8] MRC London Institute of Medical Sciences,undefined
[9] Institute of Biotechnology,undefined
[10] Technische Universität Berlin,undefined
[11] University of Edinburgh,undefined
[12] Max Planck Institute of Biophysics,undefined
[13] Structural Biology,undefined
[14] Genentech,undefined
来源
Nature Structural & Molecular Biology | 2020年 / 27卷
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摘要
Complexes containing a pair of structural maintenance of chromosomes (SMC) family proteins are fundamental for the three-dimensional (3D) organization of genomes in all domains of life. The eukaryotic SMC complexes cohesin and condensin are thought to fold interphase and mitotic chromosomes, respectively, into large loop domains, although the underlying molecular mechanisms have remained unknown. We used cryo-EM to investigate the nucleotide-driven reaction cycle of condensin from the budding yeast Saccharomyces cerevisiae. Our structures of the five-subunit condensin holo complex at different functional stages suggest that ATP binding induces the transition of the SMC coiled coils from a folded-rod conformation into a more open architecture. ATP binding simultaneously triggers the exchange of the two HEAT-repeat subunits bound to the SMC ATPase head domains. We propose that these steps result in the interconversion of DNA-binding sites in the catalytic core of condensin, forming the basis of the DNA translocation and loop-extrusion activities.
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页码:743 / 751
页数:8
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