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Identification and analysis of novel small molecule inhibitors of RNase E: Implications for antibacterial targeting and regulation of RNase E.


ABSTRACT: Increasing resistance of bacteria to antibiotics is a serious global challenge and there is a need to unlock the potential of novel antibacterial targets. One such target is the essential prokaryotic endoribonuclease RNase E. Using a combination of in silico high-throughput screening and in vitro validation we have identified three novel small molecule inhibitors of RNase E that are active against RNase E from Escherichia coli, Francisella tularensis and Acinetobacter baumannii. Two of the inhibitors are non-natural small molecules that could be suitable as lead compounds for the development of broad-spectrum antibiotics targeting RNase E. The third small molecule inhibitor is glucosamine-6-phosphate, a precursor of bacterial cell envelope peptidoglycans and lipopolysaccharides, hinting at a novel metabolite-mediated mechanism of regulation of RNase E.

SUBMITTER: Mardle CE 

PROVIDER: S-EPMC7284133 | biostudies-literature | 2020 Sep

REPOSITORIES: biostudies-literature

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Identification and analysis of novel small molecule inhibitors of RNase E: Implications for antibacterial targeting and regulation of RNase E.

Mardle Charlotte E CE   Goddard Layla R LR   Spelman Bailei C BC   Atkins Helen S HS   Butt Louise E LE   Cox Paul A PA   Gowers Darren M DM   Vincent Helen A HA   Callaghan Anastasia J AJ  

Biochemistry and biophysics reports 20200609


Increasing resistance of bacteria to antibiotics is a serious global challenge and there is a need to unlock the potential of novel antibacterial targets. One such target is the essential prokaryotic endoribonuclease RNase E. Using a combination of <i>in silico</i> high-throughput screening and <i>in vitro</i> validation we have identified three novel small molecule inhibitors of RNase E that are active against RNase E from <i>Escherichia coli</i>, <i>Francisella tularensis</i> and <i>Acinetobac  ...[more]

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