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Published on: January 22, 2019
CCR7-dependent stimulation of survival in dendritic cells involves inhibition of GSK3beta
Cristina Escribano1, Cristina Delgado-Martín, José Luis Rodríguez-Fernández
1Department of Immunology, Centro de Investigaciones Biológicas, Consejo Superior de Investigaciones Científicas, Madrid, Spain.
Abstract:
Chemokine receptor CCR7 regulates chemotaxis and survival in mature dendritic cells (DCs). We studied the role of glycogen synthase kinase-3beta (GSK3beta) in the regulation of CCR7-dependent survival. We show that GSK3beta behaves as a proapoptotic regulator in cultured monocyte-derived human DCs and murine splenic DCs in vitro, and in lymph node DCs in vivo. In keeping with its prosurvival role, stimulation of CCR7 induced phosphorylation/inhibition of GSK3beta, which was mediated by the prosurvival regulator Akt1, but it was independent of ERK1/2, a key regulator of chemotaxis. Stimulation of CCR7 also induced translocation of two transcription-factor targets of Akt, prosurvival NF-kappaB and proapoptotic FOXO1, to the nucleus and cytosol, respectively, resulting in DCs with a phenotype more resistant to apoptotic stimuli. We analyzed if GSK3beta was able to modulate the mobilizations of these transcription factors. Using pharmacological inhibitors, small interfering RNA, and a construct encoding constitutively active GSK3beta, we show that active GSK3beta fosters and hampers the translocations to the nucleus of FOXO and NF-kappaB, respectively. Inhibition of GSK3beta resulted in the degradation of the NF-kappaB inhibitor IkappaB, indicating a mechanism whereby GSK3 can control the translocation of NF-kappaB to the nucleus. GSK3beta and FOXO interacted in vivo, suggesting that this transcription factor could be a substrate of GSK3. The results provide a novel mechanism whereby active GSK3beta contributes to regulate apoptosis in DCs. They also suggest that upon stimulation of CCR7, Akt-mediated phosphorylation/inhibition of GSK3beta may be required to allow complete translocations of FOXO and NF-kappaB that confer DCs an extended survival.
Insights
Glycogen synthase kinase-3beta (GSK3beta) promotes apoptosis in dendritic cells (DCs). Inhibiting GSK3beta enhances DC survival by regulating transcription factors, suggesting a new mechanism for controlling DC apoptosis.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Chemokine receptor CCR7 is crucial for dendritic cell (DC) migration and survival.
- Glycogen synthase kinase-3beta (GSK3beta) plays a role in regulating apoptosis.
Purpose of the Study:
- To investigate the role of GSK3beta in CCR7-dependent survival of dendritic cells.
- To elucidate the molecular mechanisms by which GSK3beta influences DC apoptosis.
Main Methods:
- In vitro studies using cultured human monocyte-derived DCs and murine splenic DCs.
- In vivo studies using murine lymph node DCs.
- Pharmacological inhibition, small interfering RNA (siRNA), and constitutively active GSK3beta constructs.
- Analysis of transcription factor translocation (NF-kappaB, FOXO1) and protein interactions.
Main Results:
- GSK3beta acts as a proapoptotic regulator in DCs.
- CCR7 stimulation inhibits GSK3beta via Akt1, promoting DC survival.
- CCR7 stimulation induces nuclear translocation of NF-kappaB and cytosolic translocation of FOXO1.
- Active GSK3beta promotes FOXO nuclear translocation and inhibits NF-kappaB nuclear translocation.
- GSK3beta and FOXO interact in vivo, suggesting FOXO is a GSK3beta substrate.
Conclusions:
- GSK3beta is a novel regulator of apoptosis in dendritic cells.
- Akt-mediated inhibition of GSK3beta upon CCR7 stimulation is essential for complete NF-kappaB and FOXO translocation, leading to enhanced DC survival.
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