| Literature DB >> 31454170 |
Lindsay Ferguson1, Geoff Wells2, Sanjib Bhakta3, James Johnson4, Junitta Guzman4, Tanya Parish4, Robin A Prentice5,6, Federico Brucoli7.
Abstract
Iron is essential for the pathogenicity and virulence of Mycobacterium tuberculosis, which synthesises salicyl-capped siderophores (mycobactins) to acquire this element from the host. MbtA is the adenylating enzyme that catalyses the initial reaction of mycobactin biosynthesis and is solely expressed by mycobacteria. A 3200-member library comprised of lead-like, structurally diverse compounds was screened against M. tuberculosis for whole-cell inhibitory activity. A set of 846 compounds that inhibited the tubercle bacilli growth were then tested for their ability to bind to MbtA using a fluorescence-based thermal shift assay and NMR-based Water-LOGSY and saturation transfer difference (STD) experiments. We identified an attractive hit molecule, 5-hydroxyindol-3-ethylamino-(2-nitro-4-trifluoromethyl)benzene (5), that bound with high affinity to MbtA and produced a MIC90 value of 13 μm. The ligand was docked into the MbtA crystal structure and displayed an excellent fit within the MbtA active pocket, adopting a binding mode different from that of the established MbtA inhibitor Sal-AMS.Entities:
Keywords: NMR spectroscopy; compound screening; iron homeostasis; mycobactins; siderophores; tuberculosis
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Year: 2019 PMID: 31454170 PMCID: PMC6800809 DOI: 10.1002/cmdc.201900217
Source DB: PubMed Journal: ChemMedChem ISSN: 1860-7179 Impact factor: 3.466