Publication:
Energetics and geometry of FtsZ polymers: nucleated self-assembly of single protofilaments.

dc.contributor.authorHuecas, Sonia
dc.contributor.authorLlorca, Oscar
dc.contributor.authorBoskovic, Jasminka
dc.contributor.authorMartín-Benito, Jaime
dc.contributor.authorValpuesta, José María
dc.contributor.authorAndreu, José Manuel
dc.date.accessioned2024-09-16T08:16:56Z
dc.date.available2024-09-16T08:16:56Z
dc.date.issued2008-03-01
dc.description.abstractEssential cell division protein FtsZ is an assembling GTPase which directs the cytokinetic ring formation in dividing bacterial cells. FtsZ shares the structural fold of eukaryotic tubulin and assembles forming tubulin-like protofilaments, but does not form microtubules. Two puzzling problems in FtsZ assembly are the nature of protofilament association and a possible mechanism for nucleated self-assembly of single-stranded protofilaments above a critical FtsZ concentration. We assembled two-dimensional arrays of FtsZ on carbon supports, studied linear polymers of FtsZ with cryo-electron microscopy of vitrified unsupported solutions, and formulated possible polymerization models. Nucleated self-assembly of FtsZ from Escherichia coli with GTP and magnesium produces flexible filaments 4-6 nm-wide, only compatible with a single protofilament. This agrees with previous scanning transmission electron microscopy results and is supported by recent cryo-electron tomography studies of two bacterial cells. Observations of double-stranded FtsZ filaments in negative stain may come from protofilament accretion on the carbon support. Preferential protofilament cyclization does not apply to FtsZ assembly. The apparently cooperative polymerization of a single protofilament with identical intermonomer contacts is explained by the switching of one inactive monomer into the active structure preceding association of the next, creating a dimer nucleus. FtsZ behaves as a cooperative linear assembly machine.es_ES
dc.description.peerreviewedes_ES
dc.format.number5es_ES
dc.format.page1796es_ES
dc.format.volume94es_ES
dc.identifier.citationBiophys J . 2008 ;94(5):1796-806.es_ES
dc.identifier.doi10.1529/biophysj.107.115493es_ES
dc.identifier.e-issn1542-0086es_ES
dc.identifier.journalBiophysical journales_ES
dc.identifier.pubmedID18024502es_ES
dc.identifier.urihttps://hdl.handle.net/20.500.12105/23081
dc.language.isoenges_ES
dc.publisherCell Press
dc.relation.publisherversionhttps://doi.org/10.1529/biophysj.107.115493es_ES
dc.repisalud.institucionCNIOes_ES
dc.repisalud.orgCNIOCNIO::Unidades técnicas::Unidad de Microscopía Electrónicaes_ES
dc.rights.accessRightsopen accesses_ES
dc.rights.licenseAttribution-NonCommercial-NoDerivatives 4.0 Internacional*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/*
dc.subject.meshBacterial Proteinses_ES
dc.subject.meshBinding Siteses_ES
dc.subject.meshCarbones_ES
dc.subject.meshCryoelectron Microscopyes_ES
dc.subject.meshCytoskeletal Proteinses_ES
dc.subject.meshEscherichia colies_ES
dc.subject.meshEukaryotic Cellses_ES
dc.subject.meshGTP Phosphohydrolaseses_ES
dc.subject.meshGuanosine Triphosphatees_ES
dc.subject.meshIsomerismes_ES
dc.subject.meshMagnesiumes_ES
dc.subject.meshMicroscopy, Electron, Scanning Transmissiones_ES
dc.subject.meshModels, Biologicales_ES
dc.subject.meshPolymerses_ES
dc.subject.meshProtein Conformationes_ES
dc.subject.meshProtein Foldinges_ES
dc.subject.meshTubulines_ES
dc.titleEnergetics and geometry of FtsZ polymers: nucleated self-assembly of single protofilaments.es_ES
dc.typeresearch articlees_ES
dc.type.hasVersionVoRes_ES
dspace.entity.typePublication
relation.isAuthorOfPublication400c30f1-1f41-4b0d-8b2e-327d5b9c3e7e
relation.isAuthorOfPublication.latestForDiscovery400c30f1-1f41-4b0d-8b2e-327d5b9c3e7e
relation.isPublisherOfPublicationaea619d1-42a6-47f8-84e2-6bc27d6f8300
relation.isPublisherOfPublication.latestForDiscoveryaea619d1-42a6-47f8-84e2-6bc27d6f8300

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