Abstract
Cytokine-induced glucocorticoid secretion and glucocorticoid inhibition of cytokine synthesis and pleiotropic actions act as important safeguards in preventing cytokine overreaction. We found that TNF-α increased glucocorticoid-induced transcriptional activity of the glucocorticoid receptor (GR) via the glucocorticoid response elements (GRE) in L-929 mouse fibroblasts transfected with a glucocorticoid-inducible reporter plasmid. In addition, TNF-α also enhanced GR number. The TNF-α effect on transcriptional activity was absent in other cell lines that express TNF-α receptors but not GRs, and became manifest when a GR expression vector was cotransfected, indicating that TNF-α, independent of any effect it may have on GR number, has a stimulatory effect on the glucocorticoid-induced transcriptional activity of the GR. Moreover, TNF-α increased GR binding to GRE. As a functional biological correlate of this mechanism, priming of L- 929 cells with a low (noncytotoxic) dose of TNF-α significantly increased the sensitivity to glucocorticoid inhibition of TNF-α-induced cytotoxicity/apoptosis. TNF-α and IL-1β had the same stimulatory action on glucocorticoid-induced transcriptional activity of the GR via the GRE, in different types of cytokine/glucocorticoid target cells (glioma, pituitary, epithelioid). The phenomenon may therefore reflect a general molecular mechanism whereby cytokines modulate the transcriptional activity of the GR, thus potentiating the counterregulation by glucocorticoids at the level of their target cells.
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Costas, M., Trapp, T., Pereda, M. P., Sauer, J., Rupprecht, R., Nahmod, V. E., … Arzt, E. (1996). Molecular and functional evidence for in vitro cytokine enhancement of human and murine target cell sensitivity to glucocorticoids: TNF-α priming increases glucocorticoid inhibition of TNF-α-induced cytotoxicity/apoptosis. Journal of Clinical Investigation, 98(6), 1409–1416. https://doi.org/10.1172/JCI118928
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