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dc.contributor.authorZARCO ZAVALA, ILSE MARIEL-
dc.contributor.authorMORALES RIOS, EDGAR-
dc.contributor.authorMENDOZA HERNANDEZ, GUILLERMO-
dc.contributor.authorRAMIREZ_SILVA, LETICIA-
dc.contributor.authorPEREZ HERNANDEZ, GERARDO-
dc.contributor.authorGARCIA TREJO, JOSE DE JESUS-
dc.coverage.spatial<dc:creator id="info:eu-repo/dai/mx/cvu/299475">ILSE MARIEL ZARCO ZAVALA</dc:creator>-
dc.coverage.spatial<dc:creator id="info:eu-repo/dai/mx/cvu/1661">GUILLERMO MENDOZA HERNANDEZ</dc:creator>-
dc.coverage.spatial<dc:creator id="info:eu-repo/dai/mx/cvu/0000-0002-0488-6385">LETICIA RAMIREZ_SILVA</dc:creator>-
dc.coverage.spatial<dc:creator id="info:eu-repo/dai/mx/cvu/123770">GERARDO PEREZ HERNANDEZ</dc:creator>-
dc.coverage.spatial<dc:creator id="info:eu-repo/dai/mx/cvu/15465">JOSE DE JESUS GARCIA TREJO</dc:creator>-
dc.coverage.temporal<dc:subject>info:eu-repo/classification/cti/2</dc:subject>-
dc.date.accessioned2020-06-10T19:49:43Z-
dc.date.available2020-06-10T19:49:43Z-
dc.date.issued2014-
dc.identifier.citationThe FASEB Journal, vol. 28, may 2014en_US
dc.identifier.urihttp://ilitia.cua.uam.mx:8080/jspui/handle/123456789/434-
dc.description.abstractThe subunit is a novel natural inhibitor of the -proteobacterial F1FO-ATPase described originally in Paracoccus denitrificans. To characterize the mechanism by which this subunit inhibits the F1FO nanomotor, the subunit of Paracoccus denitrificans (Pd- ) was analyzed by the combination of kinetic, biochemical, bioinformatic, proteomic, and structural approaches. The subunit causes full inhibition of the sulfite-activated PdF1-ATPase with an apparent IC50 of 270 nM by a mechanism independent of the subunit. The inhibitory region of the subunit resides in the first 14 N-terminal residues of the protein, which protrude from the 4--helix bundle structure of the isolated subunit, as resolved by NMR. Cross-linking experiments show that the subunit interacts with rotor ( ) and stator (, ) subunits of the F1-ATPase, indicating that the subunit hinders rotation of the central stalk. In addition, a putatively regulatory nucleotidebinding site was found in the subunit by isothermal titration calorimetry. Together, the data show that the subunit controls the rotation of F1FO-ATPase by a mechanism reminiscent of, but different from, those described for mitochondrial IF1 and bacterial subunits where the 4--helix bundle of seems to work as an anchoring domain that orients the N-terminal inhibitory domain to hinder rotation of the central stalk.—Zarco-Zavala, M., Morales-Ríos, E., MendozaHernández, G., Ramírez-Silva, L., Pérez-Hernández, G., García-Trejo, J. J. The subunit of the F1FO-ATP synthase of -proteobacteria controls rotation of the nanomotor with a different structure.en_US
dc.description.sponsorshipThe FASEB Journalen_US
dc.language.isoInglésen_US
dc.publisherAmerican Societies for Experimental Biologyen_US
dc.relation.haspart1530-6860-
dc.rightshttps://doi.org/10.1096/fj.13-241430-
dc.rightshttps://www.fasebj.org/doi/pdf/10.1096/fj.13-241430-
dc.subjectBacterias - Clasificaciónen_US
dc.titleThe ζ subunit of the F1FO-ATP synthase of -proteobacteria controls rotation of the nanomotor with a different structureen_US
dc.typeArtículoen_US
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