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Updated: Feb 18, 2026

A Visual Assay to Monitor T6SS-mediated Bacterial Competition
Published on: March 20, 2013
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.
Abstract:
Type VI secretion systems (T6SS) function to deliver lethal payloads into target cells. Many studies have shown that protection against a single, lethal T6SS effector protein requires a cognate antidote immunity protein, both of which are often encoded together in a two-gene operon. The T6SS and an effector-immunity pair is sufficient for both killing and immunity. HereIn this paper we describe a T6SS effector operon that differs from conventional effector-immunity pairs in that eight genes are necessary for lethal effector function, yet can be countered by a single immunity protein. In this study, we investigated the role that the PefE T6SS immunity protein plays in recognition between two strains harboring nearly identical effector operons. Interestingly, despite containing seven of eight identical effector proteins, the less conserved immunity proteins only provided protection against their native effectors, suggesting that specificity and recognition could be dependent on variation within an immunity protein and one effector gene product. The variable effector gene product, PefD, is encoded upstream from pefE, and displays toxic activity that can be countered by PefE independent of T6SS-activity. Interestingly, while the entire pef operon was necessary to exert toxic activity via the T6SS in P. mirabilis, production of PefD and PefE alone was unable to exert this effector activity. Chimeric PefE proteins constructed from two P. mirabilis strains were used to localize immunity function to three amino acids. A promiscuous immunity protein was created using site-directed mutagenesis to change these residues from one variant to another. These findings support the notion that subtle differences between conserved effectors are sufficient for T6SS-mediated kin discrimination and that PefD requires additional factors to function as a T6SS-dependent effector.
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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