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Updated: May 13, 2025

A Macrophage Reporter Cell Assay to Examine Toll-Like Receptor-Mediated NF-kB/AP-1 Signaling on Adsorbed Protein Layers on Polymeric Surfaces
Published on: January 7, 2020
Nanocluster-mediated signaling crosstalk between FcγR and TLR4 in macrophage inflammatory responses
Seonik Lee1, Hunter Richman1, Yan Yu2
1Department of Chemistry, Indiana University, Bloomington, IN, USA.
Abstract:
Receptor crosstalk, the interaction between different receptors to modulate signaling, is crucial for fine-tuning the inflammatory responses of innate immune cells. Although the synergistic crosstalk between Toll-like receptor (TLR)4 and Fc gamma receptor (FcγR) is well documented, the detailed mechanism underlying this synergy remains unclear. In this study, we addressed this knowledge gap by imaging the molecular organization of TLR4 and FcγR on the macrophage cell surface and correlating it with their synergistic co-activation using ligands functionalized on lipid bilayers. We confirmed that co-activation of TLR4 and FcγR enhances whole-cell pro-inflammatory responses and tyrosine phosphorylation at the receptor level. Super-resolution microscopy revealed that TLR4 and FcγR each form discrete nanoclusters after ligand stimulation, and their synergistic co-activation increases both the size and spatial overlap of these nanoclusters. Contrary to previous assumptions that TLR4 and FcγR form heterodimers during their crosstalk, our results emphasize the critical role of nanoscale spatial organization between distinct receptor clusters in modulating innate immune responses. Additionally, these findings align with similar receptor interaction mechanisms that we previously reported in other receptor pairs, such as Dectin-1/TLR2 and FcγR/TLR2, suggesting that nanocluster interactions may represent a predominant mechanism governing crosstalk between TLRs and ITAM-containing receptors.
Insights
Receptor crosstalk, involving Toll-like receptor 4 (TLR4) and Fc gamma receptor (FcγR), enhances innate immune responses. This study reveals that nanocluster interactions, not heterodimers, drive this synergistic co-activation.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Receptor crosstalk fine-tunes innate immune cell inflammatory responses.
- Synergistic crosstalk between Toll-like receptor 4 (TLR4) and Fc gamma receptor (FcγR) is known, but mechanisms are unclear.
Purpose of the Study:
- To investigate the molecular mechanisms underlying the synergistic crosstalk between TLR4 and FcγR.
- To correlate receptor organization with innate immune cell co-activation.
Main Methods:
- Utilized super-resolution microscopy to image TLR4 and FcγR on macrophage cell surfaces.
- Employed ligands functionalized on lipid bilayers for receptor co-activation.
- Assessed whole-cell pro-inflammatory responses and tyrosine phosphorylation.
Main Results:
- Co-activation of TLR4 and FcγR enhanced pro-inflammatory responses and tyrosine phosphorylation.
- Ligand stimulation induced discrete nanoclusters of TLR4 and FcγR.
- Synergistic co-activation increased nanocluster size and spatial overlap.
- Found no evidence of TLR4-FcγR heterodimers; nanoscale organization is key.
Conclusions:
- Nanoscale spatial organization between distinct TLR4 and FcγR nanoclusters, rather than heterodimerization, is critical for synergistic crosstalk.
- This nanocluster interaction mechanism may be a predominant mode for crosstalk between Toll-like receptors and ITAM-containing receptors.
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