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Updated: Sep 7, 2025

An In vitro Model to Study Immune Responses of Human Peripheral Blood Mononuclear Cells to Human Respiratory Syncytial Virus Infection
Published on: December 10, 2013
MLKL Regulates Rapid Cell Death-independent HMGB1 Release in RSV Infected Airway Epithelial Cells
Jennifer Simpson1,2, Kirsten M Spann3, Simon Phipps1,2,4
1QIMR Berghofer Medical Research Institute, Brisbane, QLD, Australia.
Abstract:
Respiratory syncytial virus (RSV)-induced bronchiolitis is a significant contributor to infant morbidity and mortality. Previously, we identified that necroptosis, a pro-inflammatory form of cell death mediated by receptor-interacting serine/threonine-protein kinase 1 (RIPK1) and RIPK3, and mixed lineage kinase domain like protein (MLKL), occurs in RSV-infected human airway epithelial cells (hAECs), mediating the release of the alarmin high mobility group box 1 (HMGB1). Here, we show that RSV infection of hAECs induces the biphasic release of HMGB1 at 6 ("early") and 24 ("late") hours post infection (hpi). The early phase of HMGB1 release at 6 hpi is cell death-independent, however, this release is nonetheless attenuated by inhibition of MLKL (primarily associated with necroptosis). The early release of HMGB1 promotes the late phase of HMGB1 release via the activation of RAGE (receptor for advanced glycation endproducts) and occurs with cell death. Treatment of hAECS with exogenous HMGB1 combined with a pan-caspase inhibitor induces hAEC necroptosis, and is attenuated by the RAGE antagonist, FPS-ZM1. Together, these findings demonstrate that RSV infection of hAECs leads to the early release of HMGB1, followed by a paracrine feed-forward amplification loop that further increases HMGB1 levels and promotes cell death. As the inhibition of MLKL or targeting of HMGB1/RAGE pathway attenuates the release of pro-inflammatory HMGB1 and decreases viral load, this suggests that the pharmacological targeting of these pathways may be of benefit for the treatment of severe RSV bronchiolitis.
Insights
Respiratory syncytial virus (RSV) infection triggers a two-phase release of high mobility group box 1 (HMGB1), promoting cell death and increasing viral load. Targeting MLKL or the HMGB1/RAGE pathway may treat severe RSV bronchiolitis.
Area of Science:
- Immunology
- Virology
- Cell Biology
Background:
- Respiratory syncytial virus (RSV) bronchiolitis causes significant infant illness and death.
- Necroptosis, a programmed cell death pathway involving RIPK1, RIPK3, and MLKL, and HMGB1 release occur in RSV-infected cells.
- Previous work identified necroptosis and HMGB1 release in RSV-infected human airway epithelial cells (hAECs).
Purpose of the Study:
- To investigate the biphasic release of HMGB1 in RSV-infected hAECs.
- To elucidate the mechanisms underlying HMGB1 release and its role in RSV-induced cell death.
- To explore potential therapeutic targets for severe RSV bronchiolitis.
Main Methods:
- RSV infection of hAECs.
- Measurement of HMGB1 release at early (6 hpi) and late (24 hpi) time points.
- Inhibition of MLKL and RAGE (using FPS-ZM1).
- Treatment with exogenous HMGB1 and a pan-caspase inhibitor.
Main Results:
- RSV infection induced biphasic HMGB1 release at 6 and 24 hpi.
- Early HMGB1 release was cell death-independent but MLKL-dependent.
- Early HMGB1 release amplified late HMGB1 release via RAGE, leading to cell death.
- Exogenous HMGB1 induced necroptosis in hAECs, which was RAGE-dependent.
- Inhibition of MLKL or HMGB1/RAGE signaling reduced HMGB1 release and RSV viral load.
Conclusions:
- RSV infection initiates a feed-forward loop involving HMGB1 release and RAGE activation, promoting necroptosis and viral replication.
- Targeting MLKL or the HMGB1/RAGE pathway shows promise for treating severe RSV bronchiolitis.
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