Inhibitors of bacterial RNA polymerase transcription complex

Daniel S. Wenholz, Michael Miller, Catherine Dawson, Mohan Bhadbhade, David StC Black, Renate Griffith, Hue Dinh, Amy Cain, Peter Lewis, Naresh Kumar*

*Corresponding author for this work

    Research output: Contribution to journalArticlepeer-review

    4 Citations (Scopus)

    Abstract

    A series of hybrid compounds that incorporated anthranilic acid with activated 1H-indoles through a glyoxylamide linker were designed to target bacterial RNA polymerase holoenzyme formation using computational docking. Synthesis, in vitro transcription inhibition assays, and biological testing of the hybrids identified a range of potent anti-transcription inhibitors with activity against a range of pathogenic bacteria with MICs as low as 3.1 μM. A structure activity relationship study identified the key structural components necessary for inhibition of both bacterial growth and transcription. Correlation of in vitro transcription inhibition activity with in vivo mechanism of action was established using fluorescence microscopy and resistance passaging using Gram-positive bacteria showed no resistance development over 30 days. Furthermore, no toxicity was observed from the compounds in a wax moth larvae model, establishing a platform for the development of a series of new antibacterial drugs with an established mode of action.

    Original languageEnglish
    Article number105481
    Pages (from-to)1-21
    Number of pages21
    JournalBioorganic Chemistry
    Volume118
    DOIs
    Publication statusPublished - Jan 2022

    Keywords

    • DNA Transcription inhibition
    • Antibacterial
    • Indoles
    • RNA polymerase

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