17 results on '"Coppo, Maddalena"'
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2. The transcriptional repressor Hes1 attenuates inflammation by regulating transcription elongation
3. Minireview: Nuclear Receptor Coregulators of the p160 Family: Insights into Inflammation and Metabolism
4. Glucocorticoid-Induced Leucine Zipper (GILZ) Over-Expression in T Lymphocytes Inhibits Inflammation and Tissue Damage in Spinal Cord Injury
5. Negative elongation factor complex enables macrophage inflammatory responses by controlling anti-inflammatory gene expression
6. Gene-specific mechanisms direct glucocorticoid-receptor-driven repression of inflammatory response genes in macrophages
7. Author response: Gene-specific mechanisms direct glucocorticoid-receptor-driven repression of inflammatory response genes in macrophages
8. Glucocorticoid-induced phosphorylation by CDK9 modulates the coactivator functions of transcriptional cofactor GRIP1 in macrophages
9. The transcriptional coregulator GRIP1 controls macrophage polarization and metabolic homeostasis
10. Glucocorticoid-Induced Leucine Zipper (GILZ) controls T lymphocytes differentiation
11. Glucocorticoid induced leucine zipper (GILZ) over-expression in T lymphocytes inhibits inflammation and tissue damage in spinal cord injury
12. The glucocorticoid-induced leucine zipper (GILZ) and its new isoform L-GILZ inhibit myogenic terminal differentation and mediate anti-myogenic effects of glucocorticoids
13. GILZ Promotes Production of Peripherally Induced Treg Cells and Mediates the Crosstalk between Glucocorticoids and TGF-β Signaling
14. Glucocorticoid receptor coordinates transcription factor-dominated regulatory network in macrophages
15. Long Glucocorticoid-induced Leucine Zipper (L-GILZ) Protein Interacts with Ras Protein Pathway and Contributes to Spermatogenesis Control
16. Glucocorticoid-Induced Leucine Zipper (GILZ) Over-Expression in T Lymphocytes Inhibits Inflammation and Tissue Damage in Spinal Cord Injury
17. Glucocorticoid-Induced Leucine Zipper Is Protective in Th1-Mediated Models of Colitis
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