The acute promyelocytic leukemia (PML)-retinoic acid receptor alpha (RAR alpha) fusion product recruits histone deacetylase ( HDAC) and DNA methyltransferase (DNMT) activities on retinoic acid (RA)-target promoters causing their silencing and differentiation block. RA treatment induces epigenetic modi. cations at its target loci and restores myeloid differentiation of APL blasts. Using RA-sensitive and RA-resistant APL cell lines and primary blasts, we addressed the functional relevance of the aberrant methylation status at the RA-target promoter RAR beta 2 and the mechanism by which methylation is reversed by RA. RA decreased DNMT expression and activity, which correlated with demethylation at specific sites on RAR beta 2 promoter/exon-1, and the ability of APL blasts to differentiate in vitro and in vivo. None of these events occurred in an RA-resistant APL cell line containing a PML-RAR alpha defective for ligand binding. The specific contribution of the HDAC and DNMT pathways to the response of APL cells to RA was also tested by inhibiting these enzymatic activities with TSA and/or 5-azacytidine. In RA-responsive and RA-resistant APL blasts, TSA and 5-azacytidine induced specific changes on the chromatin state at RA-target sites, increased the RA effect on promoter activity, endogenous RA-target gene expression and differentiation. These results extend the rationale for chromatin-targeted treatment in APL and RA-resistant leukemias.

Retinoic acid targets DNA-methyltransferases and histone deacetylases during APL blast differentiation in vitro and in vivo / Fazi, Francesco; Lorena, Travaglini; Carotti, Daniela; Palitti, Franco; Daniela, Diverio; Myriam, Alcalay; Suzan, Mcnamara; Whjr, Miller; F., Lo Coco; Pier Giuseppe, Pelicci; Nervi, Clara. - In: ONCOGENE. - ISSN 0950-9232. - STAMPA. - 24:11(2005), pp. 1820-1830. [10.1038/sj.onc.1208286]

Retinoic acid targets DNA-methyltransferases and histone deacetylases during APL blast differentiation in vitro and in vivo

FAZI, Francesco;CAROTTI, Daniela;PALITTI, Franco;NERVI, Clara
2005

Abstract

The acute promyelocytic leukemia (PML)-retinoic acid receptor alpha (RAR alpha) fusion product recruits histone deacetylase ( HDAC) and DNA methyltransferase (DNMT) activities on retinoic acid (RA)-target promoters causing their silencing and differentiation block. RA treatment induces epigenetic modi. cations at its target loci and restores myeloid differentiation of APL blasts. Using RA-sensitive and RA-resistant APL cell lines and primary blasts, we addressed the functional relevance of the aberrant methylation status at the RA-target promoter RAR beta 2 and the mechanism by which methylation is reversed by RA. RA decreased DNMT expression and activity, which correlated with demethylation at specific sites on RAR beta 2 promoter/exon-1, and the ability of APL blasts to differentiate in vitro and in vivo. None of these events occurred in an RA-resistant APL cell line containing a PML-RAR alpha defective for ligand binding. The specific contribution of the HDAC and DNMT pathways to the response of APL cells to RA was also tested by inhibiting these enzymatic activities with TSA and/or 5-azacytidine. In RA-responsive and RA-resistant APL blasts, TSA and 5-azacytidine induced specific changes on the chromatin state at RA-target sites, increased the RA effect on promoter activity, endogenous RA-target gene expression and differentiation. These results extend the rationale for chromatin-targeted treatment in APL and RA-resistant leukemias.
2005
acute promyelocytic leukemia; differentiation therapy; dna methylation; histone deacetylases; retinoic acid
01 Pubblicazione su rivista::01a Articolo in rivista
Retinoic acid targets DNA-methyltransferases and histone deacetylases during APL blast differentiation in vitro and in vivo / Fazi, Francesco; Lorena, Travaglini; Carotti, Daniela; Palitti, Franco; Daniela, Diverio; Myriam, Alcalay; Suzan, Mcnamara; Whjr, Miller; F., Lo Coco; Pier Giuseppe, Pelicci; Nervi, Clara. - In: ONCOGENE. - ISSN 0950-9232. - STAMPA. - 24:11(2005), pp. 1820-1830. [10.1038/sj.onc.1208286]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/238983
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