| Literature DB >> 24116234 |
Danilo G Moriel1, Scott A Beatson, Daniël J Wurpel, Jeffrey Lipman, Graeme R Nimmo, David L Paterson, Mark A Schembri.
Abstract
Acinetobacter baumannii is an emerging opportunistic bacterium associated with nosocomial infections in intensive care units. The alarming increase in infections caused by A. baumannii is strongly associated with enhanced resistance to antibiotics, in particular carbapenems. This, together with the lack of a licensed vaccine, has translated into significant economic, logistic and health impacts to health care facilities. In this study, we combined reverse vaccinology and proteomics to identify surface-exposed and secreted antigens from A. baumannii. Using in silico prediction tools and comparative genome analysis in combination with in vitro proteomic approaches, we identified 42 antigens that could be used as potential vaccine targets. Considering the paucity of effective antibiotics available to treat multidrug-resistant A. baumannii infections, these vaccine targets may serve as a framework for the development of a broadly protective multi-component vaccine, an outcome that would have a major impact on the burden of A. baumannii infections in intensive care units across the globe.Entities:
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Year: 2013 PMID: 24116234 PMCID: PMC3792912 DOI: 10.1371/journal.pone.0077631
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Figure 1Collection of A. baumannii genome sequences used in this study.
The evolutionary history was inferred using 39 genome sequences, since only partial sequence data was available for some of the strains analyzed (W6976, SDF, A118, WM99c). ND, not defined in the PubMLST database.
Figure 2Selection of potential vaccine candidates against A. baumannii.
The 62 antigens overlapping both reverse vaccinology and proteomic analysis are represented, including their prevalence in the 43 strains used in this study. Predictions of subcellular localization (PSORTb) and signal sequence (LipoP and SignalP) are indicated. Potentially insoluble antigens due to transmembrane beta-barrel structure prediction (PHYRE2) are indicated. Strains and antigens are sorted according to prevalence, incidence and sequence variability.
A. baumannii top vaccine candidates.
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| ABAYE0057 | - | + | NlpB lipoprotein | 202 | Unknown | SpII | NlpB/DapX lipoprotein |
| ABAYE0120 | - | + | Hypothetical protein | 153 | Unknown | SpII | |
| ABAYE0266 | - | + | Lipoprotein | 198 | Unknown | SpII | |
| ABAYE0267 | - | + | Hypothetical protein | 233 | Unknown | SpII | |
| ABAYE0360 | - | + | Hypothetical protein | 144 | EC | SpII | |
| ABAYE0500 | - | + | Lipoprotein | 160 | OM | SpII | OmpA (PF00691) |
| ABAYE0506 | - | + | Hypothetical protein | 402 | Unknown | SpII | |
| ABAYE0814 | - | + | Hypothetical protein | 141 | Unknown | SpII | |
| ABAYE1048 | - | + | Lipoprotein | 277 | OM | SpII | LysM domain (PF01476) |
| ABAYE1221 | + | + | Hypothetical protein | 127 | Unknown | SpII | |
| ABAYE1860 | + | - | Hypothetical protein | 326 | OM | SpII | |
| ABAYE2498 | - | + | Hypothetical protein | 197 | Unknown | SpI | |
| ABAYE2700 | - | + | Hypothetical protein | 230 | Unknown | SpII | |
| ABAYE2921 | - | + | Lipoprotein | 133 | OM | SpII | SmpA/OmlA family (PF04355) |
| ABAYE3245 | - | + | Lipoprotein | 170 | Unknown | SpII | LPS-assembly (PF04390) |
| ABAYE3358 | - | + | Hypothetical protein | 197 | Unknown | SpII | |
| ABAYE3468 | + | + | Hypothetical protein | 334 | OM | SpII | |
| ABAYE3745 | - | + | Hypothetical protein | 138 | Unknown | SpII | |
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| ABAYE0304 | + | + | Fimbrial protein | 158 | EC | - | Adhesion (PF13544) |
| ABAYE0448 | + | + | Hypothetical protein | 808 | EC | - | Haemagglutinin-like |
| ABAYE0792 | + | + | Hypothetical protein | 8201 | Unknown | - | Adhesion (PF13754) |
| ABAYE0821 | + | + | Hypothetical protein | 3370 | Unknown | - | Adhesion (PF13754) |
| ABAYE1037 | + | + | Hypothetical protein | 729 | EC | - | Adhesion (PF13754) |
| ABAYE1319 | + | - | CsuA/B; fimbrial protein | 181 | Unknown | SpI | Adhesion (PF05229) |
| ABAYE1470 | + | - | Biofilm protein | 177 | EC | SpI | Adhesion (PF05229) |
| ABAYE1856 | + | + | Fimbrial protein | 178 | EC | SpI | Adhesion (PF00419) |
| ABAYE1859 | + | + | Fimbrial adhesin | 337 | EC | SpI | Adhesion (PF00419) |
| ABAYE2132 | + | - | Fimbrial protein | 210 | EC | SpI | Adhesion (PF00419) |
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| ABAYE0795 | - | + | Metalloprotease | 246 | Unknown | SpII | Metalloprotease-like |
| ABAYE0990 | - | + | Protease | 921 | OM | SpI | Metalloprotease (PF05193) |
| ABAYE1129 | + | + | Hydrolase | 486 | Unknown | SpII | Alpha/beta hydrolase (PF12697) |
| ABAYE2043 | - | + | Metallopeptidase | 678 | Unknown | SpI | Metalloprotease M3 (PF01432) |
| ABAYE2389 | + | + | Hypothetical protein | 145 | Unknown | SpII | DUF (PF03891), hemolysin-like |
| ABAYE2590 | - | + | Hypothetical protein | 260 | Unknown | SpII | Metalloprotease M48 (PF01435) |
| ACICU_01891 | + | - | RTX toxin | 1451 | EC | - | Hemolysin Ca2+-binding (PF00353) |
| ACICU_01911 | + | - | Exoprotein | 2142 | OM | - | MafB19-like deaminase (PF14437) |
| ACICU_01931 | - | + | Esterase/lipase | 337 | Unknown | SpI | Alpha/beta hydrolase fold (PF07859) |
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| ABAYE1197 | - | + | Hypothetical protein | 184 | Unknown | SpII | Tetratrico peptide repeats |
| ABAYE2192 | - | + | Hypothetical protein | 314 | Unknown | SpII | Tetratrico peptide repeats |
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| ABAYE1045 | - | + | Hypothetical protein | 141 | Unknown | SpI | |
| ABAYE1686 | - | + | Hypothetical protein | 163 | Unknown | SpI | |
| ABAYE3478 | - | + | Hypothetical protein | 380 | OM | SpI | |
a Secretome; b amino acids; c Signal peptide
Abbreviations: LPS: lipopolysaccharide; DUF: domain of unknown function; OM: outer membrane; EC: extracellular.