Mapping protein-exopolysaccharide binding interaction in Staphylococcus epidermidis biofilms by live cell proximity labeling
Vo, L. H.; Hong, S.; Stepler, K. E.; Liyanaarachchi, S. M.; Yang, J.; Nemes, P.; Poulin, M. B.
Show abstract
Bacterial biofilms consist of cells encased in an extracellular polymeric substance (EPS) composed of exopolysaccharides, extracellular DNA, and proteins that are critical for cell-cell adhesion and protect the cells from environmental stress, antibiotic treatments, and the host immune response. Degrading EPS components or blocking their production have emerged as promising strategies for prevention or dispersal of bacterial biofilms, but we still have little information about the specific biomolecular interactions that occur between cells and EPS components and how those interactions contribute to biofilm production. Staphylococcus epidermidis is a leading cause of nosocomial infections as a result of producing biofilms that use the exopolysaccharide poly- (1[->]6)-{beta}-N-acetylglucosamine (PNAG) as a major structural component. In this study, we have developed a live cell proximity labeling approach combined with quantitative mass spectrometry-based proteomics to map the PNAG interactome of live S. epidermidis biofilms. Through these measurements we discovered elastin-binding protein (EbpS) as a major PNAG-interacting protein. Using live cell binding measurements, we found that the lysin motif (LysM) domain of EbpS specifically binds to PNAG present in S. epidermidis biofilms. Our work provides a novel method for the rapid identification of exopolysaccharide-binding proteins in live biofilms that will help to extend our understanding of the biomolecular interactions that are required for bacterial biofilm formation.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A microbiota-derived bile acid modulates biofilm formation by the probiotic strain Escherichia coli Nissle 1917 96%
- Lifestyle-specific S-nitrosylation of protein cysteine thiols regulates Escherichia coli biofilm formation and resistance to oxidative stress 95%
- Biofilm formation displays intrinsic offensive and defensive features of Bacillus cereus 93%
Similar papers in this journal
- The Protein Interaction Networks of Catalytically-Active and Catalytically-Inactive PqsE in Pseudomonas aeruginosa 94%
- Pseudomonas aeruginosa leucine aminopeptidase influences early biofilm composition and structure via vesicle-associated anti-biofilm activity 94%
- Disulfide bonds are required for cell division, cell envelope biogenesis and antibiotic resistance proteins in mycobacteria 94%
Similar papers in this journal
- Cysteine reactivity profiling identifies host regulators of Mycobacterium tuberculosis replication in human macrophages 93%
- Biofilm inhibitor taurolithocholic acid alters colony morphology, specialized metabolism, and virulence of Pseudomonas aeruginosa 93%
- Investigating β-lactam drug targets in Mycobacterium tuberculosis using chemical probes 93%
Similar papers in this journal
- Glycosylation of serine/threonine-rich intrinsically disordered regions of membrane-associated proteins in streptococci 94%
- Designing efficient genetic code expansion in Bacillus subtilis to gain biological insights 94%
- Proteome allocation is linked to transcriptional regulation through a modularized transcriptome 94%
Similar papers in this journal
- Human gut bacteria tailor extracellular vesicle cargo for the breakdown of diet- and host-derived glycans 95%
- Adhesive interactions within microbial consortia can be differentiated at the single-cell level through expansion microscopy 94%
- Architecture of cell-cell junctions in situ reveals a mechanism for bacterial biofilm inhibition 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.