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Updated: Jul 18, 2026

Identification of Intracellular Signaling Events Induced in Viable Cells by Interaction with Neighboring Cells Undergoing Apoptotic Cell Death
Published on: December 27, 2016
Combinatorial pattern recognition receptor signaling alters the balance of life and death in macrophages
Tracie A Seimon1, Amrom Obstfeld, Kathryn J Moore
1Department of Medicine and Anatomy, Columbia University, New York, NY 10032, USA.
Abstract:
Macrophage pattern recognition receptors (PRRs) play key roles in innate immunity, but they also may contribute to disease processes under certain pathological conditions. We recently showed that engagement of the type A scavenger receptor (SRA), a PRR, triggers JNK-dependent apoptosis in endoplasmic reticulum (ER)-stressed macrophages. In advanced atherosclerotic lesions, the SRA, activated JNK, and ER stress are observed in macrophages, and macrophage death in advanced atheromata leads to plaque necrosis. Herein, we show that SRA ligands trigger apoptosis in ER-stressed macrophages by cooperating with another PRR, Toll-like receptor 4 (TLR4), to redirect TLR4 signaling from prosurvival to proapoptotic. Common SRA ligands activate both TLR4 signaling and engage the SRA. The TLR4 effect results in activation of the proapoptotic MyD88-JNK branch of TLR4, whereas the SRA effect silences the prosurvival IRF-3-IFN-beta branch of TLR4. The normal cell-survival effect of LPS-induced TLR4 activation is converted into an apoptosis response by immunoneutralization of IFN-beta, and the apoptosis effect of SRA ligands is converted into a cell-survival response by reconstitution with IFN-beta. Thus, combinatorial signaling between two distinct PRRs results in a functional outcome-macrophage apoptosis that does not occur with either PRR alone. PRR-induced macrophage death may play important roles in advanced atherosclerosis and in other innate immunity-related processes in which the balance between macrophage survival and death is critical.
Insights
Two pattern recognition receptors (PRRs), scavenger receptor A (SRA) and Toll-like receptor 4 (TLR4), cooperate to induce macrophage apoptosis. This combined signaling promotes cell death in conditions like atherosclerosis.
Area of Science:
- Immunology
- Cell Biology
- Pathology
Background:
- Macrophage pattern recognition receptors (PRRs) are crucial for innate immunity but can also drive disease.
- Scavenger receptor A (SRA) engagement triggers JNK-dependent apoptosis in ER-stressed macrophages.
- Advanced atherosclerotic lesions exhibit SRA, activated JNK, and ER stress in macrophages, leading to plaque necrosis.
Purpose of the Study:
- To investigate how SRA and Toll-like receptor 4 (TLR4) signaling interact in ER-stressed macrophages.
- To determine the mechanism by which combined PRR signaling leads to macrophage apoptosis.
Main Methods:
- Investigated the signaling pathways of SRA and TLR4 in macrophages under ER stress.
- Utilized immunoneutralization of IFN-beta and reconstitution experiments to elucidate pathway interactions.
Main Results:
- SRA ligands cooperate with TLR4 to shift TLR4 signaling from pro-survival to pro-apoptotic pathways.
- SRA engagement silences the pro-survival IRF-3-IFN-beta branch of TLR4.
- Combined PRR signaling results in macrophage apoptosis, an outcome not achieved by either PRR alone.
Conclusions:
- Combinatorial signaling between SRA and TLR4 induces macrophage apoptosis.
- This PRR-mediated macrophage death is a critical factor in advanced atherosclerosis.
- Understanding this interaction is vital for innate immunity-related diseases where macrophage survival balance is key.
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