Disruption of tetR type regulator adeN by mobile genetic element confers elevated virulence in Acinetobacter
Rajagopalan Saranathan1, Sudhakar Pagal1, Ajit R Sawant1
1a Department of Biotechnology, School of Life Sciences , Pondicherry University , Puducherry , India.
Abstract:
Acinetobacter baumannii is an important human pathogen and considered as a major threat due to its extreme drug resistance. In this study, the genome of a hyper-virulent MDR strain PKAB07 of A. baumannii isolated from an Indian patient was sequenced and analyzed to understand its mechanisms of virulence, resistance and evolution. Comparative genome analysis of PKAB07 revealed virulence and resistance related genes scattered throughout the genome, instead of being organized as an island, indicating the highly mosaic nature of the genome. Many intermittent horizontal gene transfer events, insertion sequence (IS) element insertions identified were augmenting resistance machinery and elevating the SNP densities in A. baumannii eventually aiding in their swift evolution. ISAba1, the most widely distributed insertion sequence in A. baumannii was found in multiple sites in PKAB07. Out of many ISAba1 insertions, we identified novel insertions in 9 different genes wherein insertional inactivation of adeN (tetR type regulator) was significant. To assess the significance of this disruption in A. baumannii, adeN mutant and complement strains were constructed in A. baumannii ATCC 17978 strain and studied. Biofilm levels were abrogated in the adeN knockout when compared with the wild type and complemented strain of adeN knockout. Virulence of the adeN knockout mutant strain was observed to be high, which was validated by in vitro experiments and Galleria mellonella infection model. The overexpression of adeJ, a major component of AdeIJK efflux pump observed in adeN knockout strain could be the possible reason for the elevated virulence in adeN mutant and PKB07 strain. Knocking out of adeN in ATCC strain led to increased resistance and virulence at par with the PKAB07. Disruption of tetR type regulator adeN by ISAba1 consequently has led to elevated virulence in this pathogen.
Insights
Disrupting the adeN gene in Acinetobacter baumannii with insertion sequence ISAba1 significantly increases its virulence and drug resistance. This finding reveals a key mechanism behind the pathogen's evolution and threat.
Area of Science:
- Microbiology
- Genomics
- Pathogen Evolution
Background:
- Acinetobacter baumannii is a critical human pathogen known for extreme drug resistance.
- Understanding its virulence and resistance mechanisms is vital for combating infections.
Purpose of the Study:
- To sequence and analyze the genome of a hyper-virulent, multidrug-resistant (MDR) A. baumannii strain (PKAB07).
- To investigate the genetic basis of virulence, resistance, and evolution in A. baumannii.
Main Methods:
- Comparative genome analysis of the PKAB07 strain.
- Identification and characterization of insertion sequence (IS) element insertions, specifically ISAba1.
- Construction and study of adeN knockout and complement strains in A. baumannii ATCC 17978.
Main Results:
- The A. baumannii genome exhibits a mosaic structure with scattered virulence and resistance genes.
- Insertion sequence ISAba1 was found in multiple sites, including novel insertions inactivating the adeN gene.
- adeN knockout mutants showed abrogated biofilm formation, significantly increased virulence, and enhanced resistance, comparable to the PKAB07 strain.
- Overexpression of the AdeIJK efflux pump component, adeJ, was observed in adeN knockout strains.
Conclusions:
- Disruption of the tetR-type regulator adeN by ISAba1 insertion is a significant factor in the elevated virulence of A. baumannii.
- This genetic alteration contributes to the pathogen's rapid evolution and increased threat level.
- Targeting adeN or related pathways could offer new strategies against MDR A. baumannii infections.
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