Subtle variation within conserved effector operon gene products contributes to T6SS-mediated killing and immunity

Christopher J Alteri1, Stephanie D Himpsl1, Kevin Zhu1

  • 1Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor, Michigan, United States of America.

Plos Pathogens
|November 21, 2017
PubMed

Insights

Type VI secretion systems (T6SS) deliver toxins. This study reveals a unique T6SS operon requiring eight genes for function but only one immunity protein for defense, highlighting subtle variations for kin discrimination.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Bacterial Pathogenesis

Background:

  • Type VI secretion systems (T6SS) are essential for bacterial inter-cellular competition, delivering toxic effector proteins into target cells.
  • Typically, T6SS effectors are neutralized by cognate immunity proteins, often encoded together in an operon.
  • This study examines a unique T6SS effector operon with an expanded gene set for effector function but a single immunity protein.

Purpose of the Study:

  • To investigate the mechanism of a novel T6SS effector operon requiring eight genes for lethal activity.
  • To determine the role of the PefE immunity protein in recognizing and neutralizing T6SS effectors.
  • To explore how subtle variations in effector and immunity proteins mediate bacterial kin discrimination.

Main Methods:

  • Comparative analysis of nearly identical T6SS effector operons in different bacterial strains.
  • Functional characterization of the PefD effector and PefE immunity protein.
  • Site-directed mutagenesis and construction of chimeric PefE proteins to identify key residues for immunity.
  • Assays to assess T6SS-dependent and independent toxic activity.

Main Results:

  • A single immunity protein (PefE) can neutralize an eight-gene T6SS effector complex.
  • Specificity of immunity is determined by variations in the PefE protein and the PefD effector.
  • A promiscuous immunity protein was generated by altering three amino acids in PefE.
  • PefD requires additional factors to function as a T6SS-dependent effector, despite exhibiting toxicity independently.

Conclusions:

  • Subtle variations within T6SS effector-immunity pairs are sufficient for bacterial kin discrimination.
  • The PefE immunity protein plays a critical role in recognizing specific T6SS effectors.
  • PefD's T6SS-dependent function is modulated by accessory factors, indicating complex effector activation mechanisms.

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