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Author Spotlight: THP-1 Macrophage Response to LPS/ATP — Unveiling the Pyroptosis, Apoptosis, and Necroptosis Spectrum
Published on: May 3, 2024
Pore-Forming Toxins Induce Macrophage Necroptosis during Acute Bacterial Pneumonia
Norberto González-Juarbe1,2, Ryan Paul Gilley2, Cecilia Anahí Hinojosa1,2
1Department of Microbiology, The University of Alabama at Birmingham, Birmingham, Alabama, United States of America.
Abstract:
Necroptosis is a highly pro-inflammatory mode of cell death regulated by RIP (or RIPK)1 and RIP3 kinases and mediated by the effector MLKL. We report that diverse bacterial pathogens that produce a pore-forming toxin (PFT) induce necroptosis of macrophages and this can be blocked for protection against Serratia marcescens hemorrhagic pneumonia. Following challenge with S. marcescens, Staphylococcus aureus, Streptococcus pneumoniae, Listeria monocytogenes, uropathogenic Escherichia coli (UPEC), and purified recombinant pneumolysin, macrophages pretreated with inhibitors of RIP1, RIP3, and MLKL were protected against death. Alveolar macrophages in MLKL KO mice were also protected during S. marcescens pneumonia. Inhibition of caspases had no impact on macrophage death and caspase-1 and -3/7 were determined to be inactive following challenge despite the detection of IL-1β in supernatants. Bone marrow-derived macrophages from RIP3 KO, but not caspase-1/11 KO or caspase-3 KO mice, were resistant to PFT-induced death. We explored the mechanisms for PFT-induced necroptosis and determined that loss of ion homeostasis at the plasma membrane, mitochondrial damage, ATP depletion, and the generation of reactive oxygen species were together responsible. Treatment of mice with necrostatin-5, an inhibitor of RIP1; GW806742X, an inhibitor of MLKL; and necrostatin-5 along with co-enzyme Q10 (N5/C10), which enhances ATP production; reduced the severity of S. marcescens pneumonia in a mouse intratracheal challenge model. N5/C10 protected alveolar macrophages, reduced bacterial burden, and lessened hemorrhage in the lungs. We conclude that necroptosis is the major cell death pathway evoked by PFTs in macrophages and the necroptosis pathway can be targeted for disease intervention.
Insights
Pore-forming toxins from diverse bacteria trigger necroptosis in macrophages, a cell death pathway that drives pneumonia. Inhibiting key necroptosis proteins (RIPK1, RIPK3, MLKL) protected against bacterial pneumonia, offering a potential therapeutic strategy.
Area of Science:
- Immunology
- Cell Biology
- Pathogen Biology
Background:
- Necroptosis is a pro-inflammatory cell death pathway regulated by RIP kinases and MLKL.
- Bacterial pore-forming toxins (PFTs) are known virulence factors that can cause cell damage.
Purpose of the Study:
- To investigate whether PFTs from various bacterial pathogens induce necroptosis in macrophages.
- To explore the therapeutic potential of targeting necroptosis for bacterial pneumonia.
Main Methods:
- Macrophages and mouse models were challenged with different bacterial pathogens and purified PFTs.
- Inhibitors of RIPK1, RIPK3, and MLKL, as well as knockout mice, were used to block necroptosis.
- Mechanisms of PFT-induced cell death, including ion homeostasis, mitochondrial function, and ATP levels, were analyzed.
Main Results:
- Diverse bacterial PFTs, including from S. marcescens, S. aureus, S. pneumoniae, L. monocytogenes, and UPEC, induced macrophage necroptosis.
- RIPK1, RIPK3, and MLKL inhibitors protected macrophages and mice against PFT-induced death and S. marcescens pneumonia.
- PFT-induced necroptosis involved loss of ion homeostasis, mitochondrial damage, ATP depletion, and reactive oxygen species generation.
- Targeting necroptosis with inhibitors reduced pneumonia severity, bacterial burden, and lung hemorrhage in a mouse model.
Conclusions:
- Necroptosis is the primary cell death pathway induced by bacterial PFTs in macrophages.
- Targeting the necroptosis pathway presents a promising therapeutic approach for treating PFT-mediated bacterial infections and associated diseases like pneumonia.
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