Depletion of ZBTB38 potentiates the effects of DNA demethylating agents in cancer cells via CDKN1C mRNA up-regulation

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作者
Claire Marchal
Maud de Dieuleveult
Claude Saint-Ruf
Nadège Guinot
Laure Ferry
Sara T. Olalla Saad
Mariana Lazarini
Pierre-Antoine Defossez
Benoit Miotto
机构
[1] Institut Cochin,INSERM, U1016
[2] CNRS,Université Paris Descartes
[3] Sorbonne Paris Cité,Université Paris Diderot, Sorbonne Paris Cité
[4] Epigenetics and Cell Fate,Hematology and Blood Transfusion Center
[5] Instituto Nacional de Ciência e Tecnologia do Sangue,University of Campinas/Hemocentro
[6] Federal University of São Paulo,Unicamp
[7] Florida State University,Department of Biological Sciences
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Oncogenesis | / 7卷
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摘要
DNA methyltransferase inhibitor (DNMTi) treatments have been used for patients with myelodysplastic syndromes (MDS) and acute myeloid leukemia (AML), and have shown promising beneficial effects in some other types of cancers. Here, we demonstrate that the transcriptional repressor ZBTB38 is a critical regulator of the cellular response to DNMTi. Treatments with 5-azacytidine, or its derivatives decitabine and zebularine, lead to down-regulation of ZBTB38 protein expression in cancer cells, in parallel with cellular damage. The depletion of ZBTB38 by RNA interference enhances the toxicity of DNMTi in cell lines from leukemia and from various solid tumor types. Further we observed that inactivation of ZBTB38 causes the up-regulation of CDKN1C mRNA, a previously described indirect target of DNMTi. We show that CDKN1C is a key actor of DNMTi toxicity in cells lacking ZBTB38. Finally, in patients with MDS a high level of CDKN1C mRNA expression before treatment correlates with a better clinical response to a drug regimen combining 5-azacytidine and histone deacetylase inhibitors. Collectively, our results suggest that the ZBTB38 protein is a target of DNMTi and that its depletion potentiates the toxicity of DNMT inhibitors in cancer cells, providing new opportunities to enhance the response to DNMT inhibitor therapies in patients with MDS and other cancers.
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