Removing an S-layer enables endolysin-derived probes to detect Paenibacillus thiaminolyticus in mixed bacterial populations
En palabras de los autores
The emerging neonatal bacterial pathogen Paenibacillus thiaminolyticus causes sepsis and postinfectious hydrocephalus, yet few tools are available to study or specifically detect it. We developed fluorescent probes based on cell wall-binding domains (CBDs) from bacteriophage-derived cell-wall hydrolases. CBDs can target structurally conserved cell-wall glycans, making them attractive affinity reagents for bacterial detection. None of the 11 probes we designed labeled intact cells under standard conditions, and we identified a surface layer (S-layer) that prevented access to their cell-wall targets. Brief acidic treatment (pH 2.0) released abundant high-molecular-mass proteins from the cell surface and enabled labeling by five distinct CBD probes, each containing a single C-terminal S-layer homology domain. Mass spectrometry identified the main released protein as an ortholog of the P. alvei SpaA S-layer protein, which we designate SlsA. Across 26 surveyed P. thiaminolyticus genomes, we identified four distinct SlsA variants with 58-79% pairwise amino acid identity, encoded within a conserved cluster homologous to the P. alvei S-layer-associated locus. After either the acidic treatment or a quick flame fixation, the lead probe mGL-BDPt9 labeled six P. thiaminolyticus strains, including three Ugandan clinical isolates, as well as a P. dendritiformis clinical isolate from a US infant, and three additional Paenibacillus species. mGL-BDPt9 also distinguished P. thiaminolyticus from five gram-positive sepsis pathogens in pairwise mixtures and detected it in a five-species suspension. Together, these findings establish the presence of an S-layer in P. thiaminolyticus and provide a rapid fluorescent labeling strategy for multiple Paenibacillus pathogens associated with neonatal paenibacilliosis.
Apareció: viernes, 25 de septiembre. bioRxiv. Preprint, todavía sin revisión por pares.