HDAC4 and HDAC6 sustain DNA double strand break repair and stem-like phenotype by promoting radioresistance in glioblastoma cells

抗辐射性 癌症研究 HDAC4型 替莫唑胺 生物 DNA修复 DNA损伤 小发夹RNA 干细胞 基因沉默 组蛋白脱乙酰基酶 细胞凋亡 细胞培养 细胞生物学 组蛋白 基因敲除 遗传学 DNA 胶质瘤 基因
作者
Francesco Marampon,Francesca Megiorni,Simona Camero,Clara Crescioli,Heather P. McDowell,Roberta Sferra,Antonella Vetuschi,Simona Pompili,Luca Ventura,Francesca De Felice,Vincenzo Tombolini,Carlo Dominici,Roberto Maggio,Claudio Festuccia,Giovanni Luca Gravina
出处
期刊:Cancer Letters [Elsevier BV]
卷期号:397: 1-11 被引量:105
标识
DOI:10.1016/j.canlet.2017.03.028
摘要

The role of histone deacetylase (HDAC) 4 and 6 in glioblastoma (GBM) radioresistance was investigated. We found that tumor samples from 31 GBM patients, who underwent temozolomide and radiotherapy combined treatment, showed HDAC4 and HDAC6 expression in 93.5% and 96.7% of cases, respectively. Retrospective clinical data analysis demonstrated that high-intensity HDAC4 and/or HDAC6 immunostaining was predictive of poor clinical outcome. In vitro experiments revealed that short hairpin RNA-mediated silencing of HDAC4 or HDAC6 radiosensitized U87MG and U251MG GBM cell lines by promoting DNA double-strand break (DSBs) accumulation and by affecting DSBs repair molecular machinery. We found that HDAC6 knock-down predisposes to radiation therapy-induced U251MG apoptosis- and U87MG autophagy-mediated cell death. HDAC4 silencing promoted radiation therapy-induced senescence, independently by the cellular context. Finally, we showed that p53WT expression contributed to the radiotherapy lethal effects and that HDAC4 or HDAC6 sustained GBM stem-like radioresistant phenotype. Altogether, these observations suggest that HDAC4 and HDAC6 are guardians of irradiation-induced DNA damages and stemness, thus promoting radioresistance, and may represent potential prognostic markers and therapeutic targets in GBM.
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