Dissecting antibiotic effects on the cell envelope using bacterial cytological profiling: a phenotypic analysis starter kit
Artikel i vetenskaplig tidskrift, 2024

Phenotypic analysis assays such as bacterial cytological profiling (BCP) have become increasingly popular for antibiotic mode of action analysis. A plethora of dyes, protein fusions, and reporter strains are available and have been used for this purpose, enabling both rapid mode of action categorization and in-depth analysis of antibiotic mechanisms. However, non-expert researchers may struggle choosing suitable assays and interpreting results. This is a particular problem for antibiotics that have multiple or complex targets, such as the bacterial cell envelope. Here, we set out to curate a minimal set of accessible and affordable phenotypic assays that allow distinction between membrane and cell wall targets, can identify dual-action inhibitors, and can be implemented in most research environments. To this end, we employed BCP, membrane potential, fluidity, and cell wall synthesis assays. To assess specificity and ease of interpretation, we tested three well-characterized and commercially available reference antibiotics: the potassium ionophore valinomycin, the lipid II-binding glycopeptide vancomycin, and the dual-action lantibiotic nisin, which binds lipid II and forms a membrane pore. Based on our experiments, we suggest a minimal set of BCP, a membrane-potentiometric probe, and fluorescent protein fusions to MinD and MreB as basic assay set and recommend complementing these assays with Laurdan-based fluidity measurements and a PliaI reporter fusion, where indicated. We believe that our results can provide guidance for researchers who wish to use phenotypic analysis for mode of action studies but do not possess the specialized equipment or expert knowledge to employ the full breadth of possible techniques.

valinomycin

vancomycin

antimicrobial agents

nisin

mechanism of action

fluorescence assays

bacterial cytological profiling

Författare

Ann-Britt Schafer

Göteborgs universitet

Margareth Sidarta

Göteborgs universitet

Ireny Abdelmesseh Nekhala Abdelmesseh

Chalmers, Life sciences, Kemisk biologi

Gabriela Marinho Righetto

Göteborgs universitet

Aysha Arshad

Chalmers, Life sciences, Kemisk biologi

Michaela Wenzel

Göteborgs universitet

Microbiology spectrum

2165-0497 (eISSN)

Vol. 12 3

Ämneskategorier

Mikrobiologi

Medicinsk bioteknologi (med inriktning mot cellbiologi (inklusive stamcellsbiologi), molekylärbiologi, mikrobiologi, biokemi eller biofarmaci)

Mikrobiologi inom det medicinska området

DOI

10.1128/spectrum.03275-23

PubMed

38289933

Mer information

Senast uppdaterat

2024-12-10