| Literature DB >> 29867878 |
Elvira Marín1, Annelies Haesaert1, Laura Padilla2, Jaume Adán2, María L Hernáez3, Lucía Monteoliva1,4, Concha Gil1,3,4.
Abstract
Gardnerella vaginalis is one of the main etiologic agents of bacterial vaginosis (BV). This infection is responsible for a wide range of public health costs and is associated with several adverse outcomes during pregnancy. Improving our understanding of G. vaginalis protein cell surface will assist in BV diagnosis. This study represents the first proteomic approach that has analyzed the exposed proteins on G. vaginalis cell surface using a shaving approach. The 261 G. vaginalis proteins identified using this approach were analyzed with bioinformatic tools to detect characteristic motifs from surface-exposed proteins, such as signal peptides (36 proteins), lipobox domains (17 proteins), LPXTG motifs (5 proteins) and transmembrane alpha-helices (66 proteins). One third of the identified proteins were found to have at least one typical motif of surface-exposed proteins. Furthermore, the subcellular location was examined using two predictors (PSORT and Gpos-mPLoc). These bioinformatic tools classified 17% of the identified proteins as surface-associated proteins. Interestingly, we identified 13 members of the ATP-binding cassette (ABC) superfamily, which were mainly involved in the translocation of various substrates across membranes. To validate the location of the G. vaginalis surface-exposed proteins, an immunofluorescence assay with antibodies against Escherichia coli GroEL was performed to reveal the extracellular location of the moonlighting GroEL. In addition, monoclonal antibodies (mAb) against G. vaginalis Cna protein were produced and used to validate the location of Cna on the surface of the G. vaginalis. These high affinity anti-Cna mAb represent a useful tool for the study of this pathogenic microorganism and the BV.Entities:
Keywords: ABC-transporters; Cna; Gardnerella vaginalis; GroEL; cell shaving; surface proteins; trypsin digestion
Year: 2018 PMID: 29867878 PMCID: PMC5962675 DOI: 10.3389/fmicb.2018.00975
Source DB: PubMed Journal: Front Microbiol ISSN: 1664-302X Impact factor: 5.640
Gardnerella vaginalis proteins identified with more than 10 peptides and their subcellular location.
| Protein_IDa | Gene namea | Descriptiona | Peptide averageb | Unique peptidesc | Location by PSORTd |
|---|---|---|---|---|---|
| BAQ33431 | Hypothetical protein | 33 | 47 | Plasmatic membrane | |
| BAQ33644 | Hypothetical protein | 26 | 36 | Plasmatic membrane | |
| BAQ33076 | Xylulose-5-phosphate/fructose-6-phosphate phosphoketolase | 23 | 29 | Cytoplasm | |
| BAQ32771 | Conserved hypothetical protein | 22 | 27 | Plasmatic membrane | |
| BAQ32803 | Dipeptide/oligopeptide ABC transporter substrate binding component | 21 | 23 | Plasmatic membrane (lipoprotein) | |
| BAQ33274 | Transketolase | 17 | 22 | Cytoplasm | |
| BAQ33156 | ATP-dependent Clp protease ATP-Binding subunit | 17 | 24 | Cytoplasm | |
| BAQ32981 | Elongation factor G | 16 | 20 | Cytoplasm | |
| BAQ33548 | Alanyl-tRNA synthase | 15 | 22 | Plasmatic membrane | |
| BAQ33427 | Putative cell surface protein | 15 | 21 | Plasmatic membrane | |
| BAQ33074 | Acetate kinase | 14 | 17 | Cytoplasm | |
| BAQ33315 | Conserved hypothetical protein | 13 | 21 | Cytoplasm | |
| BAQ33818 | ATP synthase beta subunit | 13 | 16 | Cytoplasm | |
| BAQ33052 | Conserved hypothetical protein | 12 | 16 | Cytoplasm | |
| BAQ33322 | Dehydrogenase | 12 | 13 | Cytoplasm | |
| BAQ32818 | Putative ABC transporter substrate binding component | 12 | 16 | Plasmatic membrane (lipoprotein) | |
| BAQ33450 | Pyruvate kinase | 12 | 15 | Cytoplasm | |
| BAQ32849 | Conserved hypothetical protein | 11 | 16 | Cytoplasm | |
| BAQ33816 | Hypothetical protein | 11 | 11 | Plasmatic membrane | |
| BAQ33428 | 50S ribosomal protein L25 | 11 | 13 | Cytoplasm | |
| BAQ33018 | Conserved hypothetical protein | 10 | 13 | Cytoplasm | |
| BAQ33606 | Conserved hypothetical protein | 10 | 13 | Plasmatic membrane | |
| BAQ33723 | 50S ribosomal protein L29 | 10 | 12 | Cytoplasm |