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Updated: Jun 3, 2026

Evaluation of Caspase Activation to Assess Innate Immune Cell Death
Published on: January 20, 2023
Proinflammatory caspase-2-mediated macrophage cell death induced by a rough attenuated Brucella suis strain
Fang Chen1, Xicheng Ding, Ying Ding
1Unit for Laboratory Animal Medicine, University of Michigan Medical School, Ann Arbor, MI 48109, USA.
Abstract:
Brucella spp. are intracellular bacteria that cause an infectious disease called brucellosis in humans and many domestic and wildlife animals. B. suis primarily infects pigs and is pathogenic to humans. The macrophage-Brucella interaction is critical for the establishment of a chronic Brucella infection. Our studies showed that smooth virulent B. suis strain 1330 (S1330) prevented programmed cell death of infected macrophages and rough attenuated B. suis strain VTRS1 (a vaccine candidate) induced strong macrophage cell death. To further investigate the mechanism of VTRS1-induced macrophage cell death, microarrays were used to analyze temporal transcriptional responses of murine macrophage-like J774.A1 cells infected with S1330 or VTRS1. In total 17,685 probe sets were significantly regulated based on the effects of strain, time and their interactions. A miniTUBA dynamic Bayesian network analysis predicted that VTRS1-induced macrophage cell death was mediated by a proinflammatory gene (the tumor necrosis factor alpha [TNF-α] gene), an NF-κB pathway gene (the IκB-α gene), the caspase-2 gene, and several other genes. VTRS1 induced significantly higher levels of transcription of 40 proinflammatory genes than S1330. A Mann-Whitney U test confirmed the proinflammatory response in VTRS1-infected macrophages. Increased production of TNF-α and interleukin 1β (IL-1β) were also detected in the supernatants in VTRS1-infected macrophage cell culture. Hyperphosphorylation of IκB-α was observed in macrophages infected with VTRS1 but not S1330. The important roles of TNF-α and IκB-α in VTRS1-induced macrophage cell death were further confirmed by individual inhibition studies. VTRS1-induced macrophage cell death was significantly inhibited by a caspase-2 inhibitor but not a caspase-1 inhibitor. The role of caspase-2 in regulating the programmed cell death of VTRS1-infected macrophages was confirmed in another study using caspase-2-knockout mice. In summary, VTRS1 induces a proinflammatory, caspase-2- and NF-κB-mediated macrophage cell death. This unique cell death differs from apoptosis, which is not proinflammatory. It is also different from classical pyroptosis, which is caspase-1 mediated.
Insights
Brucella suis strain VTRS1 triggers a unique, proinflammatory macrophage cell death pathway involving caspase-2 and NF-κB, distinct from apoptosis or pyroptosis. This finding is crucial for understanding brucellosis and developing new vaccine strategies.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Brucella spp. cause brucellosis, a significant zoonotic disease.
- Macrophage-Brucella interactions are key to chronic infection establishment.
- Virulent Brucella suis (S1330) inhibits macrophage cell death, while attenuated strain VTRS1 induces it.
Purpose of the Study:
- To elucidate the molecular mechanisms underlying VTRS1-induced macrophage cell death.
- To compare the host transcriptional responses to virulent (S1330) and attenuated (VTRS1) B. suis strains.
- To identify key host factors involved in VTRS1-mediated cell death.
Main Methods:
- Murine macrophage-like J774.A1 cells were infected with B. suis strains S1330 or VTRS1.
- Microarray analysis was employed to assess temporal transcriptional changes.
- Bioinformatic analyses, including dynamic Bayesian networks, were utilized.
- Inhibition studies and caspase-2 knockout mice models were used for validation.
Main Results:
- VTRS1 infection induced significant transcriptional regulation of 17,685 probe sets.
- VTRS1 triggered a proinflammatory response, including elevated TNF-α and IL-1β production.
- NF-κB pathway activation (IκB-α hyperphosphorylation) and caspase-2 involvement were identified.
- VTRS1-induced macrophage cell death was significantly reduced by caspase-2 inhibition.
Conclusions:
- Brucella suis VTRS1 induces a novel form of programmed macrophage cell death.
- This cell death is characterized by proinflammatory cytokine production and is mediated by caspase-2 and the NF-κB pathway.
- This mechanism differs from non-proinflammatory apoptosis and caspase-1-dependent pyroptosis.
- Understanding this unique cell death pathway offers insights into host-pathogen interactions and potential vaccine development.
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