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Updated: Jun 14, 2026

FtsZ Polymerization Assays: Simple Protocols and Considerations
Published on: November 16, 2013
Bacterial cell division protein FtsZ complexes with a phage protein to activate bacterial immunity
Tong Zhang1, Anastasiia Nadieina2, Carl B W Soderstrom1
1Department of Biology, Massachusetts Institute of Technology, Cambridge, MA, USA.
Abstract:
Many antiphage defence systems directly bind a specific phage-encoded protein that acts similar to a pathogen-associated molecular pattern to activate an immune response. Such activation is often assumed to occur independent of host factors. Here we demonstrate that the antiphage defence protein CapRelEbc, a fused toxin-antitoxin system from Enterobacter chengduensis, senses the T7 phage-encoded protein Gp0.4 in complex with the host bacterial factor FtsZ, an essential cell division protein. During T7 infection, Gp0.4 sequesters monomeric FtsZ to block its polymerization and thereby inhibit bacterial cell division. Only the complex of Gp0.4-FtsZ, but neither protein alone, triggers CapRelEbc activity. Structural modelling and hydrogen-deuterium exchange mass spectrometry indicate that Gp0.4, FtsZ and CapRelEbc form a ternary complex that activates phage defence. Our work suggests that activation of bacterial immune systems does not always depend exclusively on phage-encoded triggers. Instead, activation can involve host factors targeted by phages, analogous to how eukaryotic innate immune systems detect pathogen-induced perturbations of host cells through effector-triggered immunity.
Insights
Bacterial antiphage defenses can involve host factors. The Enterobacter chengduensis protein CapRelEbc activates defense only when T7 phage protein Gp0.4 binds the host cell division protein FtsZ.
Area of Science:
- Bacteriology
- Molecular Biology
- Immunology
Background:
- Antiphage defense systems often target specific phage proteins.
- Activation of these systems is typically assumed to be independent of host factors.
Purpose of the Study:
- To investigate the activation mechanism of the antiphage defense protein CapRelEbc from Enterobacter chengduensis.
- To determine if host factors are involved in the activation of bacterial immune responses.
Main Methods:
- Structural modeling
- Hydrogen-deuterium exchange mass spectrometry (HDX-MS)
- Analysis of protein-protein interactions
Main Results:
- CapRelEbc activation requires the T7 phage protein Gp0.4 in complex with the host cell division protein FtsZ.
- Gp0.4 sequesters FtsZ, inhibiting bacterial cell division.
- A ternary complex of Gp0.4, FtsZ, and CapRelEbc was identified, triggering phage defense.
Conclusions:
- Bacterial immune system activation is not solely dependent on phage-encoded triggers.
- Host factors, like FtsZ, can be involved in recognizing phage infection, similar to eukaryotic effector-triggered immunity.
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