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http://hdl.handle.net/10397/115485
| Title: | Development of a luciferase-based Gram-positive bacterial reporter system for the characterization of antimicrobial agents | Authors: | Lam, NM Tsang, TF Qu, J Tsang, MW Tao, Y Kan, CH Zou, Q Chan, KH Chu, AJ Ma, C Yang, X |
Issue Date: | Aug-2024 | Source: | Applied and environmental microbiology, Aug. 2024, v. 90, no. 8, e00717-24 | Abstract: | Mechanistic investigations are of paramount importance in elucidating the modes of action of antibiotics and facilitating the discovery of novel drugs. We reported a luciferase-based reporter system using bacterial cells to unveil mechanisms of antimicrobials targeting transcription and translation. The reporter gene Nluc encoding NanoLuciferase (NanoLuc) was integrated into the genome of the Gram-positive model organism, Bacillus subtilis, to generate a reporter strain BS2019. Cellular transcription and translation levels were assessed by quantifying the amount of Nluc mRNA as well as the luminescence catalyzed by the enzyme NanoLuc. We validated this system using three known inhibitors of transcription (rifampicin), translation (chloramphenicol), and cell wall synthesis (ampicillin). The B. subtilis reporter strain BS2019 successfully revealed a decline in Nluc expression by rifampicin and NanoLuc enzyme activity by chloramphenicol, while ampicillin produced no observable effect. The assay was employed to characterize a previously discovered bacterial transcription inhibitor, CUHK242, with known antimicrobial activity against drug-resistant Staphylococcus aureus. Production of Nluc mRNA in our reporter BS2019 was suppressed in the presence of CUHK242, demonstrating the usefulness of the construct, which provides a simple way to study the mechanism of potential antibiotic candidates at early stages of drug discovery. The reporter system can also be modified by adopting different promoters and reporter genes to extend its scope of contribution to other fields of work. | Keywords: | Antimicrobial agents Antimicrobial resistance Drug discovery Novel antibiotics Reporter assay Transcription inhibitors Translation inhibitors |
Publisher: | American Society for Microbiology | Journal: | Applied and environmental microbiology | ISSN: | 0099-2240 | EISSN: | 1098-5336 | DOI: | 10.1128/aem.00717-24 | Rights: | Copyright © 2024 American Society for Microbiology. All Rights Reserved. The following publication Lam NM, Tsang TF, Qu J, Tsang MW, Tao Y, Kan CH, Zou Q, Chan KH, Chu AJ, Ma C, Yang X. 2024. Development of a luciferase-based Gram-positive bacterial reporter system for the characterization of antimicrobial agents. Appl Environ Microbiol 90:e00717-24 is available at https://doi.org/10.1128/aem.00717-24. |
| Appears in Collections: | Journal/Magazine Article |
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| File | Description | Size | Format | |
|---|---|---|---|---|
| Lam_Development_Luciferase_Based.pdf | 3.83 MB | Adobe PDF | View/Open |
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