Metabolomics

Dataset Information

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Small Polar Hits against S. aureus: Screening, Initial Hit Optimization, and Metabolomic Studies


ABSTRACT: The global prevalence of antibacterial resistance requires new antibacterial drugs with novel chemical scaffolds and modes of action. It is also vital to design compounds with optimal physicochemical properties to permeate the bacterial cell envelope. We described an approach of combining and integrating whole cell screening and metabolomics into early antibacterial drug discovery using a library of small polar compounds. Whole cell screening of a diverse library of small polar compounds against Staphylococcus aureus gave compound 2. Hit expansion was carried out to determine structure-activity relationships. A selection of compounds from this series, together with other screened active compounds, was subjected to an initial metabolomics study to provide a metabolic fingerprint of the mode of action. It was found that compound 2 and its analogues have a different mode of action from some of the known antibacterial compounds tested. This early study highlighted the potential of whole cell screening and metabolomics in early antibacterial drug discovery. Future works will require improving potency and performing orthogonal studies to confirm the modes of action.

INSTRUMENT(S): Liquid Chromatography MS - Alternating (LC-MS (Alternating))

SUBMITTER: Isabel Vincent 

PROVIDER: MTBLS788 | MetaboLights | 2021-11-04

REPOSITORIES: MetaboLights

Dataset's files

Source:
Action DRS
MTBLS788 Other
FILES Other
a_MTBLS788_NEG_mass_spectrometry.txt Txt
a_MTBLS788_POS_mass_spectrometry.txt Txt
files-all.json Other
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Publications

Small Polar Hits against <i>S. aureus</i>: Screening, Initial Hit Optimization, and Metabolomic Studies.

Lim Andrew S T AST   Vincent Isabel M IM   Barrett Michael P MP   Gilbert Ian H IH  

ACS omega 20191104 21


The global prevalence of antibacterial resistance requires new antibacterial drugs with novel chemical scaffolds and modes of action. It is also vital to design compounds with optimal physicochemical properties to permeate the bacterial cell envelope. We described an approach of combining and integrating whole cell screening and metabolomics into early antibacterial drug discovery using a library of small polar compounds. Whole cell screening of a diverse library of small polar compounds against  ...[more]

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