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Please use this identifier to cite or link to this item: http://acervodigital.unesp.br/handle/11449/66474
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dc.contributor.authorMarchetto, Reinaldo-
dc.contributor.authorNicolás, Ernesto-
dc.contributor.authorCastillo, Núria-
dc.contributor.authorBacardit, Jordi-
dc.contributor.authorNavia, Margarita-
dc.contributor.authorVila, Jordi-
dc.contributor.authorGiralt, Ernest-
dc.date.accessioned2014-05-27T11:20:15Z-
dc.date.accessioned2016-10-25T18:16:58Z-
dc.date.available2014-05-27T11:20:15Z-
dc.date.available2016-10-25T18:16:58Z-
dc.date.issued2001-03-10-
dc.identifierhttp://dx.doi.org/10.1002/psc.292-
dc.identifier.citationJournal of Peptide Science, v. 7, n. 1, p. 27-40, 2001.-
dc.identifier.issn1075-2617-
dc.identifier.urihttp://hdl.handle.net/11449/66474-
dc.identifier.urihttp://acervodigital.unesp.br/handle/11449/66474-
dc.description.abstractQuinolones constitute a family of compounds with a potent antibiotic activity. The enzyme DNA gyrase, responsible for the replication and transcription processes in DNA of bacteria, is involved in the mechanism of action of these drugs. In this sense, it is believed that quinolones stabilize the so-called 'cleavable complex' formed by DNA and gyrase, but the whole process is still far from being understood at the molecular level. This information is crucial in order to design new biological active products. As an approach to the problem, we have designed and synthesized low molecular weight peptide mimics of DNA gyrase. These peptides correspond to sequences of the subunit A of the enzyme from Escherichia coli, that include the quinolone resistance-determining region (positions 75-92) and a segment containing the catalytic Tyr-122 (positions 116-130). The peptide mimic of the non-mutated enzyme binds to ciprofloxin (CFX) only when DNA and Mg2+ were present (Kd = 1.6 × 10 -6 m), a result previously found with DNA gyrase. On the other hand, binding was reduced when mutations of Ser-83 to Leu-83 and Asp-87 to Asn-87 were introduced, a double change previously found in the subunit A of DNA gyrase from several CFX-resistant clinical isolates of E. coli. These results suggest that synthetic peptides designed in a similar way to that described here can be used as mimics of gyrases (topoisomerases) in order to study the binding of the quinolone to the enzyme-DNA complex as well as the mechanism of action of these antibiotics. Copyright © 2001 European Peptide Society and John Wiley & Sons, Ltd.en
dc.format.extent27-40-
dc.language.isoeng-
dc.sourceScopus-
dc.subjectAffinity chromatography-
dc.subjectDNA gyrase-
dc.subjectEscherichia coli-
dc.subjectPeptide design-
dc.subjectPeptide synthesis-
dc.subjectQuinolones-
dc.subjectSolid phase-
dc.subjectTopoisomerases-
dc.subjectasparagine-
dc.subjectaspartic acid-
dc.subjectbacterial DNA-
dc.subjectbacterial enzyme-
dc.subjectciprofloxacin-
dc.subjectDNA topoisomerase (ATP hydrolysing)-
dc.subjectleucine-
dc.subjectmagnesium ion-
dc.subjectquinolone derivative-
dc.subjectserine-
dc.subjectsynthetic peptide-
dc.subjecttyrosine-
dc.subjectalpha chain-
dc.subjectamino acid sequence-
dc.subjectantibacterial activity-
dc.subjectantimicrobial activity-
dc.subjectbacterium isolate-
dc.subjectcatalysis-
dc.subjectDNA replication-
dc.subjectDNA transcription-
dc.subjectdrug binding-
dc.subjectdrug design-
dc.subjectdrug mechanism-
dc.subjectdrug resistance-
dc.subjectdrug synthesis-
dc.subjectenzyme subunit-
dc.subjectgene mutation-
dc.subjectmolecular biology-
dc.subjectmolecular mimicry-
dc.subjectmolecular weight-
dc.subjectnonhuman-
dc.subjectpriority journal-
dc.subjectAnti-Infective Agents-
dc.subjectBinding Sites-
dc.subjectChromatography, Affinity-
dc.subjectCiprofloxacin-
dc.subjectDNA Topoisomerases, Type II-
dc.subjectDrug Design-
dc.subjectMolecular Probes-
dc.subjectMutation-
dc.subjectPeptides-
dc.subjectSpectrometry, Fluorescence-
dc.titleTwo short peptides including segments of subunit A of Escherichia coli DNA gyrase as potential probes to evaluate the antibacterial activity of quinolonesen
dc.typeoutro-
dc.contributor.institutionUniversitat de Barcelona-
dc.contributor.institutionUniversidade Estadual Paulista (UNESP)-
dc.description.affiliationDepartament de Química Orgànica Facultat de Química Universitat de Barcelona, Barcelona-
dc.description.affiliationDepartament de Microbiologia Facultat de Medicina Universitat de Barcelona, Barcelona-
dc.description.affiliationDepartamento de Bioquímica Instituto de Química Universidade Estadual Paulista, São Paulo-
dc.description.affiliationDepartament de Química Orgànica Facultat de Química Universitat de Barcelona, Marti i Franquès, 1, 08028, Barcelona-
dc.description.affiliationUnespDepartamento de Bioquímica Instituto de Química Universidade Estadual Paulista, São Paulo-
dc.identifier.doi10.1002/psc.292-
dc.identifier.wosWOS:000167223300004-
dc.rights.accessRightsAcesso restrito-
dc.relation.ispartofJournal of Peptide Science-
dc.identifier.scopus2-s2.0-0035109610-
Appears in Collections:Artigos, TCCs, Teses e Dissertações da Unesp

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