High-Throughput, Quantitative Screening of Quorum-Sensing Inhibitors Based on a Bacterial Biosensor.

ACS Chem Biol

Ministry of Agriculture and Rural Affairs Key Laboratory of Pest Monitoring and Green Management, College of Plant Protection, China Agricultural University, Beijing 100193, China.

Published: December 2023

AI Article Synopsis

  • Quorum sensing (QS) allows bacteria to communicate and coordinate behaviors like biofilm formation through small signals, while quorum quenching (QQ) disrupts this process to prevent infections.
  • Researchers developed a new high-throughput screening method using a specific bacterial biosensor to identify QQ bacteria and QS inhibitors (QSIs) from large collections of soil bacteria and small molecules.
  • This study successfully discovered 31 new QQ bacteria and several QS inhibitory compounds, showing promise for developing treatments against bacterial infections and biofilms.

Article Abstract

Quorum sensing (QS) is a cell-cell communication mechanism by which bacteria synchronize social behaviors such as biofilm formation and virulence factor secretion by producing and sensing small molecular signals. Quorum quenching (QQ) by degrading signals or blocking signal transmissions has become a promising strategy for disrupting QS and preventing bacterial infection and biofilm formation. However, studies of high-throughput screening and identification approaches for quorum-sensing inhibitors (QSIs) are still inadequate. In this work, we developed a sensitive, high-throughput approach for screening QSIs based on the bacterial biosensor strain N5 (pBA7P), which contains a gene promoter induced by QS signals fused with a promoterless β-lactamase gene reporter. Using this approach, we identified 31 QQ bacteria from ∼2000 soil bacterial isolates, some belonging to the genera , , and that have not been reported previously as QQ bacteria. We also identified four QS inhibitory compounds and one QS signal analogue from ∼5000 small-molecule compounds, which profoundly affected the expression of QS-regulated genes and phenotypes of the pathogenic bacteria. This high-throughput screening system is effective and sensitive for screening of both QQ microbes and small molecules, enabling the discovery of a wide variety of biocompatible compounds.

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Source
http://dx.doi.org/10.1021/acschembio.3c00537DOI Listing

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