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.

Virulence
|April 25, 2017
PubMed

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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