# Enolase of Staphylococcus lugdunensis Is a Surface-Exposed Moonlighting Protein That Binds to Extracellular Matrix and the Plasminogen/Plasmin System

**Authors:** Muzaffar Hussain, Christian Kohler, Karsten Becker

PMC · DOI: 10.3389/fmicb.2022.837297 · Frontiers in Microbiology · 2022-03-03

## TL;DR

This study shows that a protein in Staphylococcus lugdunensis helps the bacteria stick to tissues and spread in the body, making it a potential target for vaccines.

## Contribution

The study is the first to demonstrate the moonlighting role of enolase in S. lugdunensis as a virulence factor for tissue colonization and invasion.

## Key findings

- SlEno binds to extracellular matrix components like laminin, fibronectin, and collagen.
- SlEno enhances plasminogen activation, aiding bacterial migration through fibrin matrices.
- Anti-SlEno antibodies increased bacterial clearance by granulocytes.

## Abstract

The coagulase-negative staphylococcal (CoNS) species Staphylococcus lugdunensis is unique in causing serious infections in humans that resemble those of Staphylococcus aureus rather than those of other CoNS species. The colonization and invasion of host tissue presupposes the presence of adherence factors, but only a few proteins mediating adhesion of S. lugdunensis to biotic surfaces are known yet. Here, we report on the functionality of the S. lugdunensis enolase (SlEno), which performs two distinct roles, first, as the metabolic enzyme of the glycolysis, and second, as an adherence factor to the extracellular matrix (ECM) of cells. Phylogenetic analyses of the SlEno confirmed their high conservation to enolases of other species and revealed a closer relationship to Staphylococcus epidermidis than to S. aureus. Using matrix-assisted laser desorption/ionization time of flight mass spectrometry and Western blot experiments, we identified SlEno to be located in the cytoplasm as well as on the cell surface of S. lugdunensis. Recombinantly generated and surface-associated SlEno showed the usual enolase activity by catalyzing the conversion of 2-phosphoglycerate to phosphoenolpyruvate but, in addition, also displayed strong binding to immobilized laminin, fibronectin, fibrinogen, and collagen type IV in a dose-dependent manner. We also showed a strong binding of SlEno to plasminogen (Plg) and observed a tissue plasminogen activator (tPA)-dependent conversion of Plg to plasmin (Pln) whereby the Plg activation significantly increased in the presence of SlEno. This interaction might be dependent on lysines of the SlEno protein as binding to Plg was inhibited by ε-aminocaproic acid. Furthermore, the enhanced activation of the Plg/Pln system by SlEno enabled S. lugdunensis to migrate through a fibrin matrix. This migration was about 10-fold higher than without exogenously added SlEno. Finally, we observed a significantly higher clearance of S. lugdunensis by freshly prepared granulocytes and in the presence of anti-SlEno antibodies. In conclusion, these data demonstrate for the first time a moonlighting function of the S. lugdunensis enolase, which is an underrated virulence factor for colonization and invasion of tissues. Hence, SlEno might be a potential vaccine candidate to prevent severe infections caused by this pathogen.

## Linked entities

- **Proteins:** LOC9312244 (bifunctional enolase 2/transcriptional activator), LOC125948914 (serine protease snake-like), plg (plasminogen)
- **Chemicals:** 2-phosphoglycerate (PubChem CID 59), phosphoenolpyruvate (PubChem CID 1005), ε-aminocaproic acid (PubChem CID 564)
- **Species:** Staphylococcus lugdunensis (taxon 28035), Staphylococcus aureus (taxon 1280), Staphylococcus epidermidis (taxon 1282), Mus musculus (taxon 10090)

## Full-text entities

- **Genes:** PLG (plasminogen) [NCBI Gene 5340] {aka HAE4}, FGB (fibrinogen beta chain) [NCBI Gene 2244] {aka HEL-S-78p}, ENO1 (enolase 1) [NCBI Gene 2023] {aka ENO1-IT1, ENO1L1, HEL-S-17, MPB1, NNE, PPH}, F2 (coagulation factor II, thrombin) [NCBI Gene 2147] {aka PT, RPRGL2, THPH1}, PLAT (plasminogen activator, tissue type) [NCBI Gene 5327] {aka T-PA, TPA}, Plg (plasminogen) [NCBI Gene 18815] {aka Pg}, 29748065 [NCBI Gene 29748065], 83690326 [NCBI Gene 83690326], 75175725 [NCBI Gene 75175725], 83704657 [NCBI Gene 83704657], 77298352 [NCBI Gene 77298352], 83456899 [NCBI Gene 83456899], 80023499 [NCBI Gene 80023499]
- **Diseases:** autoimmune diseases (MESH:D001327), CoNS infections (MESH:D013203), tissue lesions (MESH:D009383), S. lugdunensis infections (MESH:D007239), CK (OMIM:300831), inflammation (MESH:D007249), MH (MESH:C535694), bacterial (MESH:D001424), infective endocarditis (MESH:D004696), skin and soft (MESH:D012871), KB (OMIM:300845), bacteremia (MESH:D016470), cancer (MESH:D009369), S. lugdunensis (MESH:D018455)
- **Chemicals:** agar (MESH:D000362), tricarboxylic acid (MESH:D014233), dextran (MESH:D003911), 5-bromo-4-chloro-3-indolylphosphate (MESH:C035455), iodoacetamide (MESH:D007460), Nap (MESH:C043186), polyacrylamide (MESH:C016679), sugar (MESH:D000073893), phenylmethylsulfonyl fluoride (MESH:D010664), lysine (MESH:D008239), MgCl2 (MESH:D015636), pyruvate (MESH:D019289), N-ethylmaleimide (MESH:D005033), PEP (MESH:D010728), methanol (MESH:D000432), nitroblue tetrazolium (MESH:D009580), AP (MESH:D000667), resin (MESH:D012116), Q (MESH:D005973), EDTA (MESH:D004492), NAD + (MESH:D009243), imidazole (MESH:C029899), SDS (MESH:D012967), Coomassie blue (MESH:C048139), 2-PG (-), TBS-T (MESH:C027647), formaldehyde (MESH:D005557), LiCL (MESH:D018021), carbohydrate (MESH:D002241), NaCl (MESH:D012965), lactate (MESH:D019344), raffinose (MESH:D011887), PBS (MESH:D007854), EACA (MESH:D015119), 2-phosphoglycerate (MESH:C008885), IPTG (MESH:D007544), H+ (MESH:D006859)
- **Species:** Staphylococcus aureus (species) [taxon 1280], Bos taurus (bovine, species) [taxon 9913], Staphylococcus carnosus (species) [taxon 1281], Staphylococcus lugdunensis HKU09-01 (strain) [taxon 698737], Streptococcus pneumoniae (species) [taxon 1313], Escherichia coli (E. coli, species) [taxon 562], Mus musculus (house mouse, species) [taxon 10090], Lactobacillus acidophilus 30SC (strain) [taxon 891391], Oryctolagus cuniculus (domestic rabbit, species) [taxon 9986], Capra hircus (domestic goat, species) [taxon 9925], Bifidobacterium bifidum PRL2010 (strain) [taxon 702459], Bifidobacterium bifidum (species) [taxon 1681], Lactobacillus acidophilus (species) [taxon 1579], Staphylococcus epidermidis (species) [taxon 1282], Streptococcus pyogenes (species) [taxon 1314], Homo sapiens (human, species) [taxon 9606], Mycobacterium tuberculosis (species) [taxon 1773], Tulasnella sp. 185 (species) [taxon 256597], Bacteria Latreille et al. 1825 (Bacteria stick insect, genus) [taxon 629395], Staphylococcus epidermidis RP62A (strain) [taxon 176279], Staphylococcus lugdunensis (species) [taxon 28035]
- **Cell lines:** SlEno — Homo sapiens (Human), Colorectal adenoma, Cancer cell line (CVCL_8754)

## Full text

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## Figures

10 figures with captions in the complete paper: https://tomesphere.com/paper/PMC8928124/full.md

## References

91 references — full list in the complete paper: https://tomesphere.com/paper/PMC8928124/full.md

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Source: https://tomesphere.com/paper/PMC8928124