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dc.contributor.authorTelfer, Thomas J.
dc.contributor.authorCodd, Rachel
dc.date.accessioned2023-12-20T00:09:04Z
dc.date.available2023-12-20T00:09:04Z
dc.date.issued2018en_AU
dc.identifier.urihttps://hdl.handle.net/2123/32013
dc.description.abstractThe siderophore desferrioxamine B (DFOB, 1) native to Streptomyces pilosus is biosynthesized by the DesABCD enzyme cluster. DesA-mediated decarboxylation of l-lysine gives 1,5-diaminopentane (DP) for processing by DesBCD. S. pilosus culture medium was supplemented with rac-1,4-diamino-2-fluorobutane (rac-FDB) to compete against DP to generate fluorinated analogues of DFOB, as agents of potential clinical interest. LC-MS/MS analysis identified fluorinated analogues of DFOB with one, two, or three DP units (binary notation: 0) exchanged for one (DFOA-F1[001] (2), DFOA-F1[010] (3), DFOA-F1[100] (4)), two (DFOA-F2[011] (5), DFOA-F2[110] (6), DFOA-F2[101] (7)), or three (DFOA-F3[111] (8)) rac-FDB units (binary notation: 1). The two sets of constitutional isomers 2–4 and 5–7 arose from the position of the substrates in the N-acetyl, internal, or amine-containing regions of the DFOB trimer. N-Acetylated fluorinated DFOB analogues were formed where the rac-FDB substrate was positioned in the amine region (e.g., N-Ac-DFOA-F1[001] (2a)). Other analogues contained two hydroxamic acid groups and three amide bonds. Experiments using rac-FDB, R-FDB, or S-FDB showed a similar species profile between rac-FDB and R-FDB. These data are consistent with the following. (i) DesB can act on rac-FDB. (ii) DesC can act directly on rac-FDB. (iii) The products of DesBC or DesC catalysis of rac-FDB can undergo a second round of DesC catalysis at the free amine. (iv) DesD catalysis of these products gives N,N′-diacetylated compounds. (v) A minimum of two hydroxamic acid groups is required to form a viable DesD-substrate(s) precomplex. (vi) One or more DesBCD-catalyzed steps in DFOB biosynthesis is enantioselective. This work has provided a potential path to access fluorinated analogues of DFOB and new insight into its biosynthesis.en_AU
dc.language.isoenen_AU
dc.publisherAmerican Chemical Societyen_AU
dc.relation.ispartofACS Chemical Biologyen_AU
dc.rightsCreative Commons Attribution-NonCommercial-NoDerivatives 4.0en_AU
dc.subjectsiderophoresen_AU
dc.subjectchemical biologyen_AU
dc.subjectfluorineen_AU
dc.subjectfluorinated natural productsen_AU
dc.titleFluorinated Analogues of Desferrioxamine B from Precursor-Directed Biosynthesis Provide New Insight into the Capacity of DesBCDen_AU
dc.typeArticleen_AU
dc.subject.asrcANZSRC FoR code::34 CHEMICAL SCIENCESen_AU
dc.identifier.doi10.1021/acschembio.8b00340
dc.type.pubtypeAuthor accepted manuscripten_AU
dc.relation.arcDP180100785
usyd.facultySeS faculties schools::Faculty of Medicine and Health::School of Medical Sciencesen_AU
usyd.citation.volume13en_AU
usyd.citation.issue9en_AU
usyd.citation.spage2456en_AU
usyd.citation.epage2471en_AU
workflow.metadata.onlyNoen_AU


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