Redefinition and Unification of the SXT/R391 Family of Integrative and Conjugative Elements
Переопределение и объединение семейства интегративных и конъюгативных элементов SXT/R391
2018-04-16
SCID: 54.1/3dwnryb5
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SXT/R391 familySetCD regulatoratypical ICEsintegrase gene intintegrative and conjugative elements (ICEs)
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ABSTRACT Integrative and conjugative elements (ICEs) of the SXT/R391 family are key drivers of the spread of antibiotic resistance in Vibrio cholerae , the infectious agent of cholera, and other pathogenic bacteria. The SXT/R391 family of ICEs was defined based on the conservation of a core set of 52 genes and site-specific integration into the 5′ end of the chromosomal geneprfC. Hence, the integrase geneinthas been intensively used as a marker to detect SXT/R391 ICEs in clinical isolates. ICEs sharing most core genes but differing by their integration site and integrase gene have been recently reported and excluded from the SXT/R391 family. Here we explored the prevalence and diversity of atypical ICEs in GenBank databases and their relationship with typical SXT/R391 ICEs. We found atypical ICEs in V. cholerae isolates that predate the emergence and expansion of typical SXT/R391 ICEs in the mid-1980s in seventh-pandemic toxigenic V. cholerae strains O1 and O139. Our analyses revealed that while atypical ICEs are not associated with antibiotic resistance genes, they often carry cation efflux pumps, suggesting heavy metal resistance. Atypical ICEs constitute a polyphyletic group likely because of occasional recombination events with typical ICEs. Furthermore, we show that the alternative integration and excision genes of atypical ICEs remain under the control of SetCD, the main activator of the conjugative functions of SXT/R391 ICEs. Together, these observations indicate that substitution of the integration/excision module and change of specificity of integration do not preclude atypical ICEs from inclusion into the SXT/R391 family. IMPORTANCE Vibrio cholerae is the causative agent of cholera, an acute intestinal infection that remains to this day a world public health threat. Integrative and conjugative elements (ICEs) of the SXT/R391 family have played a major role in spreading antimicrobial resistance in seventh-pandemic V. cholerae but also in several species of Enterobacteriaceae . Most epidemiological surveys use the integrase gene as a marker to screen for SXT/R391 ICEs in clinical or environmental strains. With the recent reports of closely related elements that carry an alternative integrase gene, it became urgent to investigate whether ICEs that have been left out of the family are a liability for the accuracy of such screenings. In this study, based on comparative genomics, we broaden the SXT/R391 family of ICEs to include atypical ICEs that are often associated with heavy metal resistance.
Key Findings
1
Alternative integration/excision genes in atypical ICEs are still regulated by SetCD, the main activator of SXT/R391 conjugative functions.
2
Atypical ICEs closely related to SXT/R391 elements were identified in Vibrio cholerae genomes predating mid-1980s pandemic SXT/R391 expansion.
3
Atypical ICEs form a polyphyletic group likely due to occasional recombination with typical SXT/R391 ICEs.
4
Atypical ICEs lack antibiotic resistance genes but frequently carry cation efflux pumps indicative of heavy metal resistance.
5
Substitution of integration/excision modules and changes in integration specificity do not exclude atypical ICEs from inclusion in the SXT/R391 family, prompting redefinition/unification.
Research Object
SXT/R391 family of integrative and conjugative elements (including typical and atypical ICEs)
Research Subject
Prevalence, diversity, integration/excision module variation, regulatory control by SetCD, phylogenetic relationships, and association with resistance determinants (antibiotic and heavy-metal) of typical and atypical SXT/R391 ICEs
Publication Details
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2018-04-16
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