Targeting Chemotherapy to Decondensed H3K27me3-Marked Chromatin of AML Cells Enhances Leukemia Suppression

EZH2型 染色质 癌症研究 阿霉素 白血病 细胞毒性T细胞 DNA损伤 化疗 DNMT1型 生物 急性白血病 组蛋白 DNA甲基化 免疫学 DNA 遗传学 基因表达 基因 体外
作者
Patrizia Porazzi,Svetlana Petruk,Luca Pagliaroli,Marco De Dominici,David Deming,Matthew V. Puccetti,Saul Kushinsky,Gaurav Kumar,Valentina Minieri,Elisa Barbieri,Sandra Deliard,Alexis Grande,Marco Trizzino,Alessandro Gardini,Eli Canaani,Neil Palmisiano,Pierluigi Porcu,Adam Ertel,Paolo Fortina,Christine M. Eischen
出处
期刊:Cancer Research [American Association for Cancer Research]
卷期号:82 (3): 458-471 被引量:26
标识
DOI:10.1158/0008-5472.can-21-1297
摘要

Despite treatment with intensive chemotherapy, acute myelogenous leukemia (AML) remains an aggressive malignancy with a dismal outcome in most patients. We found that AML cells exhibit an unusually rapid accumulation of the repressive histone mark H3K27me3 on nascent DNA. In cell lines, primary cells and xenograft mouse models, inhibition of the H3K27 histone methyltransferase EZH2 to decondense the H3K27me3-marked chromatin of AML cells enhanced chromatin accessibility and chemotherapy-induced DNA damage, apoptosis, and leukemia suppression. These effects were further promoted when chromatin decondensation of AML cells was induced upon S-phase entry after release from a transient G1 arrest mediated by CDK4/6 inhibition. In the p53-null KG-1 and THP-1 AML cell lines, EZH2 inhibitor and doxorubicin cotreatment induced transcriptional reprogramming that was, in part, dependent on derepression of H3K27me3-marked gene promoters and led to increased expression of cell death-promoting and growth-inhibitory genes.In conclusion, decondensing H3K27me3-marked chromatin by EZH2 inhibition represents a promising approach to improve the efficacy of DNA-damaging cytotoxic agents in patients with AML. This strategy might allow for a lowering of chemotherapy doses, with a consequent reduction of treatment-related side effects in elderly patients with AML or those with significant comorbidities. SIGNIFICANCE: Pharmacological inhibition of EZH2 renders DNA of AML cells more accessible to cytotoxic agents, facilitating leukemia suppression with reduced doses of chemotherapy.See related commentary by Adema and Colla, p. 359.
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