Medically Relevant Acinetobacter Species Require a Type II Secretion System and Specific Membrane-Associated

Christian M Harding1, Rachel L Kinsella2, Lauren D Palmer3

  • 1Department of Molecular Microbiology, Washington University School of Medicine in St. Louis, St. Louis, Missouri, United States of America.

Plos Pathogens
|January 15, 2016
PubMed

Insights

Acinetobacter nosocomialis uses a type II secretion system (T2SS) to cause severe infections. This study identifies the T2SS as crucial for Acinetobacter virulence, exporting key enzymes like lipases and proteases.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Pathogenesis

Background:

  • Acinetobacter species are opportunistic human pathogens.
  • The molecular mechanisms of Acinetobacter pathogenesis are poorly understood.
  • Type II secretion systems (T2SS) are known virulence factors in Gram-negative bacteria.

Purpose of the Study:

  • To investigate the role of the type II secretion system (T2SS) in Acinetobacter virulence.
  • To identify substrates secreted by the Acinetobacter T2SS.
  • To characterize the components and regulation of the Acinetobacter T2SS.

Main Methods:

  • Bioinformatic analysis of Acinetobacter genomes.
  • Proteomic analysis to identify secreted proteins.
  • Construction and testing of mutant strains in virulence models (Galleria mellonella and murine pulmonary infection).
  • Biochemical characterization of secreted proteins and their chaperones.

Main Results:

  • Acinetobacter nosocomialis possesses a functional T2SS essential for full virulence.
  • The T2SS secretes multiple substrates, including lipases (LipA, LipH) and a protease (CpaA).
  • The Acinetobacter T2SS utilizes a type IV prepilin peptidase, not a dedicated one, and requires specific membrane-associated chaperones for effector secretion.

Conclusions:

  • The T2SS is the first bona fide secretion system demonstrated to be required for Acinetobacter virulence.
  • The identified T2SS chaperones represent a novel class of membrane-associated secretion mediators.
  • Understanding the Acinetobacter T2SS provides insights into Gram-negative bacterial pathogenesis and potential therapeutic targets.

Related Concept Videos

Gram-negative Bacterial Protein Secretion Systems01:17

Gram-negative Bacterial Protein Secretion Systems

Gram-negative bacteria utilize sophisticated protein secretion systems to transport proteins across their double-membrane envelope into the extracellular environment or host cells. Based on their mechanism of action, these systems are classified into one-step and two-step pathways.One-Step Secretion Systems (Types I, III, IV, and VI)One-step secretion systems bypass the periplasm entirely, forming a continuous channel that spans both the inner and outer membranes:Type I Secretion System (T1SS):...
1.4K
Regulation of Bacterial Virulence01:28

Regulation of Bacterial Virulence

Pathogenic bacteria employ a range of regulatory mechanisms to modulate the expression of virulence genes in response to environmental and host-derived signals. These mechanisms ensure that virulence factors are expressed only under favorable conditions, thereby optimizing infection and survival strategies.Mechanisms of Virulence RegulationKey regulatory strategies include:Two-Component Systems: These consist of a membrane-bound sensor kinase and a cytoplasmic response regulator. Environmental...
17
Gene Regulation in Microbial Communities: Quorum Sensing01:28

Gene Regulation in Microbial Communities: Quorum Sensing

Quorum sensing is a mechanism of bacterial communication that enables coordinated gene expression in response to changes in population density. This facilitates collective behaviors that enhance survival, resource acquisition, and ecological adaptation. This process relies on small signaling molecules called autoinducers that accumulate as bacterial populations grow. When a critical threshold concentration of autoinducers is reached, bacterial cells collectively modify gene expression,...
873
Bacterial Toxins01:12

Bacterial Toxins

Bacterial toxins are sophisticated virulence factors that enable pathogenic bacteria to interact with, invade, and damage host tissues. These toxins fall broadly into two types: protein exotoxins, which are secreted into the environment and target specific host receptors, and lipopolysaccharide endotoxins, which are structural components of the bacterial outer membrane released primarily during bacterial lysis or membrane shedding. Exotoxins generally act more selectively, binding to cell...
34
Bacterial Gastroenteritis01:18

Bacterial Gastroenteritis

Bacterial gastroenteritis, characterized by diarrhea, abdominal cramps, and vomiting, is often caused by ingestion of contaminated food or water and is frequently associated with pathogenic Escherichia coli strains. These microbes exploit two principal mechanisms to inflict disease.Shiga toxin–producing E. coli, also referred to as STEC—notably O157:H7—release Shiga toxins that target ribosomes, blocking protein synthesis. The B subunit of the toxin binds the host glycolipid...
20
Fimbriae, Pili, and Axial Filaments01:28

Fimbriae, Pili, and Axial Filaments

Fimbriae and pili are specialized bacterial surface structures that play pivotal roles in adhesion, genetic exchange, and motility. Composed primarily of pilin protein, these hairlike appendages are crucial for bacterial survival and pathogenicity in various environments.Fimbriae: Adhesion and PathogenicityFimbriae are fine, filamentous structures measuring 2–10 nanometers in diameter and are densely distributed on the bacterial cell surface. They facilitate bacterial adhesion to abiotic...
2.9K