Synthetic analogues of marine bisindole alkaloids as potent selective inhibitors of MRSA pyruvate kinase

dc.contributor.advisorDavies-Coleman, Michael
dc.contributor.advisorLobb, Kevin
dc.contributor.authorVeale, Clinton Gareth Lancaster
dc.date.accessioned2026-03-04T08:44:35Z
dc.date.issued2014,2014-04-02
dc.description.abstractGlobally, methicillin resistant Staphylococcus aureus (MRSA) has become increasingly difficult to manage in the clinic and new antibiotics are required. The structure activity relationship (SAR) study presented in this thesis forms part of an international collaborative effort to identify potent and selective inhibitors of an MRSA pyruvate kinase (PK) enzyme target. In earlier work the known marine natural product bromodeoxytopsentin (1.6), isolated from a South African marine sponge Topsentia pachastrelloides, exhibited selective and significant inhibition of MRSA PK (ICâ‚…â‚€ 60 nM). Accordingly bromodeoxytopsentin provided the initial chemical scaffold around which our SAR study was developed. Following a comprehensive introduction, providing the necessary background to the research described in subsequent Chapters, this thesis has been divided into three major parts. Part one (Chapter 2) documents the synthesis of two natural imidazole containing topsentin analogues 1.40, 1.46, five new synthetic analogues 1.58"”1.61, 2.104. In the process we developed a new method for the synthesis of topsentin derivatives via selenium dioxide mediated oxidation of N-Boc protected 3-acetylindoles to yield glyoxal intermediates which were subsequently cyclized and deprotected to yield the desired products. Interestingly we were able to demonstrate a delicate relationship between the relative equivalents of selenium dioxide and water used during the oxidation step, careful manipulation of which was required to prevent the uncontrolled formation of side products. Synthetic compounds 1.40, 1.46, 1.58"”1.61 were found to be potent inhibitors of MRSA PK (ICâ‚…â‚€ 238, 2.1, 23, 1.4, 6.3 and 3.2 nM respectively) with 1000-10000 fold selectivity for MRSA PK over four human orthologs. In the second part of this
dc.description.degreeDoctoral thesis
dc.description.degreePhD
dc.format.extent260 pages
dc.format.mimetypeapplication/pdf
dc.identifier.otherhttp://hdl.handle.net/10962/d1020893
dc.identifier.urihttps://researchrepository.ru.ac.za/handle/123456789/6203
dc.languageEnglish
dc.publisherRhodes University, Faculty of Science, Department of Chemistry
dc.rightsVeale, Clinton Gareth Lancaster
dc.subjectAlkaloids
dc.subjectPyruvate kinase
dc.subjectStaphylococcus aureus
dc.subjectAntibiotics
dc.subjectSponges -- South Africa
dc.subjectImidazoles
dc.subjectBiological assay
dc.subjectAntibacterial agents
dc.titleSynthetic analogues of marine bisindole alkaloids as potent selective inhibitors of MRSA pyruvate kinase
dc.typeAcademic thesis

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