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Development and Functional Characterization of Murine Tolerogenic Dendritic Cells
Published on: May 18, 2018
CD14 regulates the dendritic cell life cycle after LPS exposure through NFAT activation
Ivan Zanoni1, Renato Ostuni, Giusy Capuano
1Department of Biotechnology and Bioscience, University of Milano-Bicocca, Piazza della Scienza 2, 20126 Milan, Italy.
Abstract:
Toll-like receptors (TLRs) are the best characterized pattern recognition receptors. Individual TLRs recruit diverse combinations of adaptor proteins, triggering signal transduction pathways and leading to the activation of various transcription factors, including nuclear factor kappaB, activation protein 1 and interferon regulatory factors. Interleukin-2 is one of the molecules produced by mouse dendritic cells after stimulation by different pattern recognition receptor agonists. By analogy with the events after T-cell receptor engagement leading to interleukin-2 production, it is therefore plausible that the stimulation of TLRs on dendritic cells may lead to activation of the Ca(2+)/calcineurin and NFAT (nuclear factor of activated T cells) pathway. Here we show that mouse dendritic cell stimulation with lipopolysaccharide (LPS) induces Src-family kinase and phospholipase Cgamma2 activation, influx of extracellular Ca(2+) and calcineurin-dependent nuclear NFAT translocation. The initiation of this pathway is independent of TLR4 engagement, and dependent exclusively on CD14. We also show that LPS-induced NFAT activation via CD14 is necessary to cause the apoptotic death of terminally differentiated dendritic cells, an event that is essential for maintaining self-tolerance and preventing autoimmunity. Consequently, blocking this pathway in vivo causes prolonged dendritic cell survival and an increase in T-cell priming capability. Our findings reveal novel aspects of molecular signalling triggered by LPS in dendritic cells, and identify a new role for CD14: the regulation of the dendritic cell life cycle through NFAT activation. Given the involvement of CD14 in disease, including sepsis and chronic heart failure, the discovery of signal transduction pathways activated exclusively via CD14 is an important step towards the development of potential treatments involving interference with CD14 functions.
Insights
Stimulating dendritic cells with lipopolysaccharide (LPS) activates the CD14 pathway, leading to nuclear factor of activated T cells (NFAT) activation. This pathway is crucial for dendritic cell death, self-tolerance, and preventing autoimmunity.
Area of Science:
- Immunology
- Cell Biology
- Molecular Signaling
Background:
- Toll-like receptors (TLRs) are key pattern recognition receptors involved in innate immunity.
- TLR activation triggers signaling pathways, leading to transcription factor activation and cytokine production, such as Interleukin-2.
- Dendritic cells play a critical role in initiating immune responses and maintaining self-tolerance.
Purpose of the Study:
- To investigate the signaling pathways activated by lipopolysaccharide (LPS) in mouse dendritic cells.
- To determine the role of CD14 in LPS-induced signaling and dendritic cell function.
- To explore the implications of CD14-mediated signaling in immune regulation and disease.
Main Methods:
- Stimulation of mouse dendritic cells with LPS.
- Analysis of Src-family kinase and phospholipase Cgamma2 activation.
- Measurement of extracellular Ca(2+) influx and calcineurin-dependent nuclear NFAT translocation.
- In vivo studies blocking the CD14-NFAT pathway.
Main Results:
- LPS stimulation induces Src-family kinase and phospholipase Cgamma2 activation, Ca(2+) influx, and calcineurin-dependent NFAT translocation in dendritic cells.
- This pathway is initiated independently of TLR4, relying exclusively on CD14.
- LPS-induced NFAT activation via CD14 is essential for the apoptotic death of terminally differentiated dendritic cells.
- Blocking this pathway prolongs dendritic cell survival and enhances T-cell priming capability.
Conclusions:
- CD14 exclusively initiates an LPS-triggered signaling pathway involving NFAT activation in dendritic cells.
- This CD14-NFAT pathway regulates dendritic cell life cycle, crucial for self-tolerance and preventing autoimmunity.
- Targeting CD14-specific signaling offers potential therapeutic strategies for diseases like sepsis and chronic heart failure.
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