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Authordc.contributor.authorMontecinos Franjola, Felipe Antonio 
Authordc.contributor.authorJames, Nicholas G. es_CL
Authordc.contributor.authorConcha Marambio, Luis es_CL
Authordc.contributor.authorBrunet, Juan E. es_CL
Authordc.contributor.authorLagos Mónaco, Rosalba es_CL
Authordc.contributor.authorMonasterio Opazo, Octavio es_CL
Authordc.contributor.authorJameson, David M. es_CL
Admission datedc.date.accessioned2014-12-24T14:49:35Z
Available datedc.date.available2014-12-24T14:49:35Z
Publication datedc.date.issued2014
Cita de ítemdc.identifier.citationBiochimica et Biophysica Acta 1844 (2014) 1193–1200en_US
Identifierdc.identifier.otherdx.doi.org/10.1016/j.bbapap.2014.03.012
Identifierdc.identifier.urihttps://repositorio.uchile.cl/handle/2250/119872
General notedc.descriptionArtículo de publicación ISIen_US
Abstractdc.description.abstractCell division protein FtsZ cooperatively self-assembles into straight filaments when bound to GTP. A set of conformational changes that are linked to FtsZ GTPase activity are involved in the transition from straight to curved filaments that eventually disassemble. In thiswork, we characterized the fluorescence of single Trp mutants as a reporter of the predicted conformational changes between the GDP- and GTP-states of Escherichia coli FtsZ. Steady-state fluorescence characterization showed the Trp senses different environments and displays low solvent accessibility. Time-resolved fluorescence data indicated that the main conformational changes in FtsZ occur at the interaction surface between the N and C domains, but also minor rearrangements were detected in the bulk of the N domain. Surprisingly, despite its location near the bottomprotofilament interface at the C domain, the Trp 275 fluorescence lifetime did not report changes between the GDP and GTP states. The equilibrium unfolding of FtsZ features an intermediate that is stabilized by the nucleotide bound in the N-domain aswell as by quaternary protein–protein interactions. In this context,we characterized the unfolding of the Trpmutants using time-resolved fluorescence and phasor plot analysis. A novel picture of the structural transition from the native state in the absence of denaturant, to the solvent-exposed unfolded state is presented. Taken together our results show that conformational changes between the GDP and GTP states of FtsZ, such as those observed in FtsZ unfolding, are restricted to the interaction surface between the N and C domains.en_US
Patrocinadordc.description.sponsorshipThis work was supported by FP7 EC DIVINOCELL grant 223431 and Fondo Nacional de Desarrollo Científico y Tecnológico grant 1130711 (to O.M.). F.M.-F. received fellowships from Becas Chile and Programa de Mejoramiento de la Calidad y Equidad de la Educación, and was supported by Comisión Nacional de Investigación Científica y Tecnológica grant 24090139.en_US
Lenguagedc.language.isoenen_US
Publisherdc.publisherElsevieren_US
Type of licensedc.rightsAttribution-NonCommercial-NoDerivs 3.0 Chile*
Link to Licensedc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/cl/*
Keywordsdc.subjectFtsZen_US
Títulodc.titleSingle tryptophan mutants of FtsZ: Nucleotide binding/exchange and conformational transitionsen_US
Document typedc.typeArtículo de revista


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Except where otherwise noted, this item's license is described as Attribution-NonCommercial-NoDerivs 3.0 Chile