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dc.contributor.authorSkjaerven, Lars
dc.contributor.authorGrant, Barry
dc.contributor.authorMuga Villate, Arturo ORCID
dc.contributor.authorTeigen, Knut
dc.contributor.authorMcCammon, J. Andrew
dc.contributor.authorReuter, Nathalie
dc.contributor.authorMartínez, Aurora
dc.date.accessioned2011-05-31T17:53:23Z
dc.date.available2011-05-31T17:53:23Z
dc.date.issued2011-03-10
dc.identifier.citationPLoS Comput Biol 7(3) : (2011) // e1002004es
dc.identifier.issn1553-734X
dc.identifier.urihttp://hdl.handle.net/10810/2691
dc.description14 p.es
dc.description.abstractGroEL is an ATP dependent molecular chaperone that promotes the folding of a large number of substrate proteins in E. coli. Large-scale conformational transitions occurring during the reaction cycle have been characterized from extensive crystallographic studies. However, the link between the observed conformations and the mechanisms involved in the allosteric response to ATP and the nucleotide-driven reaction cycle are not completely established. Here we describe extensive (in total 2.2 mu s long) unbiased molecular dynamics (MD) simulations that probe the response of GroEL subunits to ATP binding. We observe nucleotide dependent conformational transitions, and show with multiple 100 ns long simulations that the ligand-induced shift in the conformational populations are intrinsically coded in the structure-dynamics relationship of the protein subunit. Thus, these simulations reveal a stabilization of the equatorial domain upon nucleotide binding and a concomitant "opening" of the subunit, which reaches a conformation close to that observed in the crystal structure of the subunits within the ADP-bound oligomer. Moreover, we identify changes in a set of unique intrasubunit interactions potentially important for the conformational transition.es
dc.description.sponsorshipThe Norwegian Research Council is acknowledged for CPU resources granted through the NOTUR supercomputing program (http://www.notur.no/) and Bergen Center for Computational Science for providing powerful computer facilities (http://www.bccs.uni.no/). Work at CSIC/UPV/EHU was financed by MICINN (Grant BUF2007-64452). The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.es
dc.language.isoenges
dc.publisherPublic Library of Sciencees
dc.rightsinfo:eu-repo/semantics/openAccesses
dc.subjectnormal mode analysises
dc.subjectbacterial chaperonin groeles
dc.subjectamber force fieldes
dc.subjectcrystal structurees
dc.subjectallosteric mechanismes
dc.subjectescherichia colies
dc.subjectproteinses
dc.subjectATPes
dc.subjectcooperativityes
dc.subjectbindinges
dc.titleConformational Sampling and Nucleotide-Dependent Transitions of the GroEL Subunit Probed by Unbiased Molecular Dynamics Simulationses
dc.typeinfo:eu-repo/semantics/articlees
dc.rights.holder© 2011 Skjaerven et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.es
dc.relation.publisherversionhttp://www.ploscompbiol.org/article/info%3Adoi%2F10.1371%2Fjournal.pcbi.1002004es
dc.identifier.doi10.1371/journal.pcbi.1002004
dc.departamentoesBioquímica y biología moleculares_ES
dc.departamentoeuBiokimika eta biologia molekularraes_ES
dc.subject.categoriaCELLULAR AND MOLECULAR NEUROSCIENCE
dc.subject.categoriaMOLECULAR BIOLOGY
dc.subject.categoriaMODELING AND SIMULATION
dc.subject.categoriaGENETICS AND HEREDITY
dc.subject.categoriaECOLOGY, EVOLUTION, BEHAVIOR AND SYSTEMATICS
dc.subject.categoriaECOLOGY
dc.subject.categoriaCOMPUTATIONAL THEORY AND MATHEMATICS


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