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Pathogenic Acinetobacter species have a functional type I secretion system and contact-dependent inhibition systems

Christian M Harding1, Marina R Pulido1,2, Gisela Di Venanzio1

  • 1From the Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, Missouri 63110.

Insights

Pathogenic Acinetobacter species utilize type I secretion systems (T1SS) and contact-dependent inhibition (CDI) systems to cause disease. This study reveals T1SS is crucial for biofilm formation and cross-talk with type VI secretion, while CDI systems inhibit growth.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Pathogenesis

Background:

  • Acinetobacter species, including A. baumannii and A. nosocomialis, are significant opportunistic human pathogens.
  • While drug resistance mechanisms are known, virulence factors driving Acinetobacter pathogenesis remain poorly understood.
  • Secretion systems are critical for bacterial virulence but are incompletely characterized in Acinetobacter.

Purpose of the Study:

  • To define the complete secretome of Acinetobacter nosocomialis strain M2.
  • To investigate the roles of type I secretion systems (T1SS) and contact-dependent inhibition (CDI) systems in Acinetobacter pathogenesis.
  • To explore potential cross-talk between different secretion systems in Acinetobacter.

Main Methods:

  • Bioinformatics analysis of the Acinetobacter secretome.
  • Quantitative proteomics to identify secreted proteins.
  • Mutational analyses to determine the function of T1SS and CDI systems.

Main Results:

  • The complete secretome of A. nosocomialis M2 was defined, identifying T1SS and CDI systems.
  • Acinetobacter T1SS exports RTX-serralysin-like toxins and biofilm-associated protein (Bap), and is essential for biofilm formation.
  • T1SS component mutations impaired type VI secretion, indicating cross-talk; functional CDI systems were found in A. nosocomialis and A. baumannii, mediating growth inhibition.

Conclusions:

  • Differential quantitative proteomics is powerful for studying secreted proteins in pathogens.
  • Acinetobacter utilizes T1SS and CDI systems, with T1SS playing a key role in biofilm development and interacting with T6SS.
  • CDI systems are widespread in pathogenic Acinetobacter, contributing to inter-bacterial interactions and pathogenesis.

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