TY - JOUR
T1 - Immunosuppressive Activity of Endovanilloids
T2 - N-Arachidonoyl-Dopamine Inhibits Activation of the NF-κB, NFAT, and Activator Protein 1 Signaling Pathways
AU - Sancho, Rocío
AU - Macho, Antonio
AU - De La Vega, Laureano
AU - Calzado, Marco A.
AU - Fiebich, Bernd L.
AU - Appendino, Giovanni
AU - Muñoz, Eduardo
PY - 2004/2/15
Y1 - 2004/2/15
N2 - Endogenous N-acyl dopamines such as N-arachidonoyldopamine (NADA) and N-oleoyldopamine have been recently identified as a new class of brain neurotransmitters sharing endocannabinoid and endovanilloid biological activities. As endocannabinoids show immunomodulatory activity, and T cells play a key role in the onset of several diseases that affect the CNS, we have evaluated the immunosuppressive activity of NADA and N-oleoyldopamine in human T cells, discovering that both compounds are potent inhibitors of early and late events in TCR-mediated T cell activation. Moreover, we found that NADA specifically inhibited both IL-2 and TNF-α gene transcription in stimulated Jurkat T cells. To further characterize the inhibitory mechanisms of NADA at the transcriptional level, we examined the DNA binding and transcriptional activities of NF-κB, NF-AT, and AP-1 transcription factors in Jurkat cells. We found that NADA inhibited NF-κB-dependent transcriptional activity without affecting either degradation of the cytoplasmic NF-κB inhibitory protein, IκBα, or DNA binding activity. However, phosphorylation of the p65/RelA subunit was clearly inhibited by NADA in stimulated cells. In addition, NADA inhibited both binding to DNA and the transcriptional activity of NF-AT and AP-1, as expected from the inhibition of NF-AT1 dephosphorylation and c-Jun N-terminal kinase activation in stimulated T cells. Finally, overexpression of a constitutively active form of calcineurin demonstrated that this phosphatase may represent one of the main targets of NADA. These findings provide new mechanistic insights into the anti-inflammatory activities of NADA and highlight their potential to design novel therapeutic strategies to manage inflammatory diseases.
AB - Endogenous N-acyl dopamines such as N-arachidonoyldopamine (NADA) and N-oleoyldopamine have been recently identified as a new class of brain neurotransmitters sharing endocannabinoid and endovanilloid biological activities. As endocannabinoids show immunomodulatory activity, and T cells play a key role in the onset of several diseases that affect the CNS, we have evaluated the immunosuppressive activity of NADA and N-oleoyldopamine in human T cells, discovering that both compounds are potent inhibitors of early and late events in TCR-mediated T cell activation. Moreover, we found that NADA specifically inhibited both IL-2 and TNF-α gene transcription in stimulated Jurkat T cells. To further characterize the inhibitory mechanisms of NADA at the transcriptional level, we examined the DNA binding and transcriptional activities of NF-κB, NF-AT, and AP-1 transcription factors in Jurkat cells. We found that NADA inhibited NF-κB-dependent transcriptional activity without affecting either degradation of the cytoplasmic NF-κB inhibitory protein, IκBα, or DNA binding activity. However, phosphorylation of the p65/RelA subunit was clearly inhibited by NADA in stimulated cells. In addition, NADA inhibited both binding to DNA and the transcriptional activity of NF-AT and AP-1, as expected from the inhibition of NF-AT1 dephosphorylation and c-Jun N-terminal kinase activation in stimulated T cells. Finally, overexpression of a constitutively active form of calcineurin demonstrated that this phosphatase may represent one of the main targets of NADA. These findings provide new mechanistic insights into the anti-inflammatory activities of NADA and highlight their potential to design novel therapeutic strategies to manage inflammatory diseases.
UR - http://www.scopus.com/inward/record.url?scp=0842321782&partnerID=8YFLogxK
U2 - 10.4049/jimmunol.172.4.2341
DO - 10.4049/jimmunol.172.4.2341
M3 - Article
SN - 0022-1767
VL - 172
SP - 2341
EP - 2351
JO - Journal of Immunology
JF - Journal of Immunology
IS - 4
ER -