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The Acinetobacter baumannii entA Gene Located Outside the Acinetobactin Cluster Is Critical for Siderophore Production, Iron Acquisition and Virulence
- Source :
- PLoS ONE, PLoS ONE, Vol 7, Iss 5, p e36493 (2012)
- Publication Year :
- 2012
- Publisher :
- Public Library of Science, 2012.
-
Abstract
- Acinetobacter baumannii causes severe infections in compromised patients, who present an iron-limited environment that controls bacterial growth. This pathogen has responded to this restriction by expressing high-affinity iron acquisition systems including that mediated by the siderophore acinetobactin. Gene cloning, functional assays and biochemical tests showed that the A. baumannii genome contains a single functional copy of an entA ortholog. This gene, which is essential for the biosynthesis of the acinetobactin precursor 2,3-dihydroxybenzoic acid (DHBA), locates outside of the acinetobactin gene cluster, which otherwise harbors all genes needed for acinetobactin biosynthesis, export and transport. In silico analyses and genetic complementation tests showed that entA locates next to an entB ortholog, which codes for a putative protein that contains the isochorismatase lyase domain, which is needed for DHBA biosynthesis from isochorismic acid, but lacks the aryl carrier protein domain, which is needed for tethering activated DHBA and completion of siderophore biosynthesis. Thus, basF, which locates within the acinetobactin gene cluster, is the only fully functional entB ortholog present in ATCC 19606(T). The differences in amino acid length and sequences between these two EntB orthologs and the differences in the genetic context within which the entA and entB genes are found in different A. baumannii isolates indicate that they were acquired from different sources by horizontal transfer. Interestingly, the AYE strain proved to be a natural entA mutant capable of acquiring iron via an uncharacterized siderophore-mediated system, an observation that underlines the ability of different A. baumannii isolates to acquire iron using different systems. Finally, experimental infections using in vivo and ex vivo models demonstrate the role of DHBA and acinetobactin intermediates in the virulence of the ATCC 19606(T) cells, although to a lesser extent when compared to the responses obtained with bacteria producing and using fully matured acinetobactin to acquire iron.
- Subjects :
- Bacterial Diseases
Acinetobacter baumannii
Siderophore
Mutant
lcsh:Medicine
Siderophores
Microbial Physiology
Gene cluster
Gene Order
Gram Negative
Bacterial Physiology
Cloning, Molecular
lcsh:Science
Oxazoles
Genetics
0303 health sciences
Multidisciplinary
Virulence
Microbial Growth and Development
Imidazoles
Chromosomes, Bacterial
Bacterial Pathogens
Host-Pathogen Interaction
Infectious Diseases
Phenotype
Medical Microbiology
Multigene Family
Medicine
Research Article
Acinetobacter Infections
Gene prediction
Iron
Context (language use)
Biology
Microbiology
03 medical and health sciences
Gene
Microbial Pathogens
030304 developmental biology
030306 microbiology
lcsh:R
Bacteriology
Molecular Sequence Annotation
biology.organism_classification
Genes, Bacterial
Genetic Loci
lcsh:Q
Developmental Biology
Subjects
Details
- Language :
- English
- ISSN :
- 19326203
- Volume :
- 7
- Issue :
- 5
- Database :
- OpenAIRE
- Journal :
- PLoS ONE
- Accession number :
- edsair.doi.dedup.....b8b2be6b7dad700cac8a2dd703f6aff8