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dc.contributor.authorAhkter, Sundus
dc.contributor.authorLund, Bjarte Aarmo
dc.contributor.authorIsmael, Aya
dc.contributor.authorLanger, Manuel
dc.contributor.authorIsaksson, Johan
dc.contributor.authorChristopeit, Tony
dc.contributor.authorLeiros, Hanna-Kirsti S.
dc.contributor.authorBayer, Annette
dc.date.accessioned2018-06-21T09:08:37Z
dc.date.available2018-06-21T09:08:37Z
dc.date.issued2018-02-10
dc.description.abstractβ-Lactam antibiotics are of utmost importance when treating bacterial infections in the medical community. However, currently their utility is threatened by the emergence and spread of β-lactam resistance. The most prevalent resistance mechanism to β-lactam antibiotics is expression of β-lactamase enzymes. One way to overcome resistance caused by β-lactamases, is the development of β-lactamase inhibitors and today several β-lactamase inhibitors e.g. avibactam are approved in the clinic. Our focus is the oxacillinase-48 (OXA-48), an enzyme reported to spread rapidly across the world and commonly identified in Escherichia coli and Klebsiella pneumoniae. To guide inhibitor design, we used diversely substituted 3-aryl and 3-heteroaryl benzoic acids to probe the active site of OXA-48 for useful enzyme-inhibitor interactions. In the presented study, a focused fragment library containing 3-substituted benzoic acid derivatives were synthesised and biochemically characterized. Based on crystallographic data from fragment-enzyme complexes, the fragments could be classified into R1 or R2 44 binders by their overall binding conformation in relation to the binding of the R1 and R2 45 side groups of imipenem. Moreover, binding interactions attractive for future inhibitor design were found and their usefulness explored by the rational design and evaluation of merged inhibitors from orthogonally binding fragments. The best inhibitors among the resulting 3,5-disubstituted benzoic acids showed inhibitory potential in the low micromolar range (IC50 = 2.9 µM). For these inhibitors, the complex X-ray structures revealed non-covalent binding to Arg250, Arg214 and Tyr211 in the active site and the interactions observed with the mono-substituted fragments were also identified in the merged structures.en_US
dc.description.sponsorshipThe National Graduate School in Structural Biology (BioStruct) European Synchrotron Radiation Facility (ESRF)en_US
dc.identifier.citationAhkter, S., Lund, B.A.L., Ismael, A., Langer, M., Isaksson, J.M., Christopeit, T., ... Bayer, A. (2018). A focused fragment library targeting the antibiotic resistance enzyme - Oxacillinase-48: Synthesis, structural evaluation and inhibitor design. European Journal of Medicinal Chemistry, 145, 634-648.en_US
dc.identifier.cristinIDFRIDAID 1534530
dc.identifier.doi10.1016/j.ejmech.2017.12.085
dc.identifier.issn0223-5234
dc.identifier.issn1768-3254
dc.identifier.urihttps://hdl.handle.net/10037/12942
dc.language.isoengen_US
dc.publisherElsevieren_US
dc.relation.ispartofIsmael, A. (2020). Method development towards synthesis of carbapenemase inhibitors. (Doctoral thesis). <a href=https://hdl.handle.net/10037/19594>https://hdl.handle.net/10037/19594</a>.
dc.relation.journalEuropean Journal of Medicinal Chemistry
dc.relation.projectIDinfo:eu-repo/grantAgreement/RCN/FRIMEDBIO/213808/Norway/Combating Antibiotic Resistance - Development of Inhibitors against Antibiotic Resistance Enzymes//en_US
dc.relation.projectIDinfo:eu-repo/grantAgreement/RCN/SYNKNØYT/218539/Norway/High Throughput Pipeline for Structure Based Drug Design, and Antibiotic Resistance Enzymes in particular//en_US
dc.rights.accessRightsopenAccessen_US
dc.subjectCrystal structureen_US
dc.subjectInhibition propertiesen_US
dc.subjectBenzoic acid derivativesen_US
dc.subjectSerine-β-lactamase inhibitorsen_US
dc.subjectFragmentsen_US
dc.subjectStructure-guided drug designen_US
dc.subjectVDP::Matematikk og Naturvitenskap: 400::Kjemi: 440en_US
dc.subjectVDP::Mathematics and natural science: 400::Chemistry: 440en_US
dc.titleA focused fragment library targeting the antibiotic resistance enzyme - Oxacillinase-48: Synthesis, structural evaluation and inhibitor designen_US
dc.typeJournal articleen_US
dc.typeTidsskriftartikkelen_US
dc.typePeer revieweden_US


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