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dc.contributor.authorJanek, Tomaszpor
dc.contributor.authorRodrigues, L. R.por
dc.contributor.authorGudiña, Eduardo J.por
dc.contributor.authorCzyznikowska, Zanetapor
dc.date.accessioned2019-06-17T08:12:42Z-
dc.date.available2019-06-17T08:12:42Z-
dc.date.issued2019-
dc.identifier.citationJanek, Tomasz; Rodrigues, Lígia R.; Gudiña, Eduardo J.; Czyznikowska, Zaneta, Metal-biosurfactant complexes characterization: binding, self-assembly and interaction with bovine serum albumin. International Journal of Molecular Sciences, 20(12), 2864, 2019por
dc.identifier.isbn1424-6783-
dc.identifier.issn1422-0067por
dc.identifier.urihttps://hdl.handle.net/1822/60531-
dc.description.abstractStudies on the specific and nonspecific interactions of biosurfactants with proteins are broadly relevant given the potential applications of biosurfactant/protein systems in pharmaceutics and cosmetics. The aim of this study was to evaluate the interactions of divalent counterions with the biomolecular anionic biosurfactant surfactin-C15 through molecular modeling, surface tension and dynamic light scattering (DLS), with a specific focus on its effects on biotherapeutic formulations. The conformational analysis based on a semi-empirical approach revealed that Cu2+ ions can be coordinated by three amide nitrogens belonging to the surfactin-C15 cycle and one oxygen atom of the aspartic acid from the side chain of the lipopeptide. Backbone oxygen atoms mainly involve Zn2+, Ca2+ and Mg2+. Subsequently, the interactions between metal-coordinated lipopeptide complexes and bovine serum albumin (BSA) were extensively investigated by fluorescence spectroscopy and molecular docking analysis. Fluorescence results showed that metal-lipopeptide complexes interact with BSA through a static quenching mechanism. Molecular docking results indicate that the metal-lipopeptide complexes are stabilized by hydrogen bonding and van der Waals forces. The biosurfactant-protein interaction properties herein described are of significance for metal-based drug discovery hypothesizing that the association of divalent metal ions with surfactin allows its interaction with bacteria, fungi and cancer cell membranes with effects that are similar to those of the cationic peptide antibiotics.por
dc.description.sponsorshipThis work was supported by the National Science Centre, Poland, projects 2018/02/X/NZ6/02201 and 2017/26/E/NZ9/00975. Publication supported by Wrocław Centre of Biotechnology, program the Leading National Research Centre (KNOW) for years 2014–2018.por
dc.language.isoengpor
dc.publisherMDPIpor
dc.rightsopenAccesspor
dc.subjectBiosurfactantpor
dc.subjectLipopeptidespor
dc.subjectMolecular modelingpor
dc.subjectFluorescence quenchingpor
dc.subjectBSApor
dc.subjectDivalent counterionspor
dc.titleMetal-biosurfactant complexes characterization: binding, self-assembly and interaction with bovine serum albuminpor
dc.typearticle-
dc.peerreviewedyespor
dc.relation.publisherversionhttp://www.mdpi.com/journal/ijmspor
dc.commentsCEB51758por
oaire.citationStartPage2864por
oaire.citationIssue12por
oaire.citationConferencePlaceSwitzerland-
oaire.citationVolume20por
dc.date.updated2019-06-15T10:31:21Z-
dc.identifier.eissn1661-6596por
dc.identifier.doi10.3390/ijms20122864por
dc.identifier.pmid31212764por
dc.description.publicationversioninfo:eu-repo/semantics/publishedVersionpor
dc.subject.wosScience & Technologypor
sdum.journalInternational Journal of Molecular Sciencespor
Aparece nas coleções:CEB - Publicações em Revistas/Séries Internacionais / Publications in International Journals/Series

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