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首页> 外文期刊>Molecular Neurobiology >Targeting Histone Deacetylase Activity to Arrest Cell Growth and Promote Neural Differentiation in Ewing Sarcoma
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Targeting Histone Deacetylase Activity to Arrest Cell Growth and Promote Neural Differentiation in Ewing Sarcoma

机译:靶向组蛋白脱乙酰酶活性,以抑制细胞生长,促进EWING SARCOMA中的神经分化

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摘要

There is an urgent need for advances in the treatment of Ewing sarcoma (EWS), an aggressive childhood tumor with possible neuroectodermal origin. Inhibition of histone deacetylases (HDAC) can revert aberrant epigenetic states and reduce growth in different experimental cancer types. Here, we investigated whether the potent HDAC inhibitor, sodium butyrate (NaB), has the ability to reprogram EWS cells towards a more differentiated state and affect their growth and survival. Exposure of two EWS cell lines to NaB resulted in rapid and potent inhibition of HDAC activity (1?h, IC~(50)1.5?mM) and a significant arrest of cell cycle progression (72?h, IC~(50)0.68–0.76?mM), marked by G0/G1 accumulation. Delayed cell proliferation and reduced colony formation ability were observed in EWS cells after long-term culture. NaB-induced effects included suppression of cell proliferation accompanied by reduced transcriptional expression of the EWS-FLI1 fusion oncogene, decreased expression of key survival and pluripotency-associated genes, and re-expression of the differentiation neuronal marker βIII-tubulin. Finally, NaB reduced c-MYC levels and impaired survival in putative EWS cancer stem cells. Our findings support the use of HDAC inhibition as a strategy to impair cell growth and survival and to reprogram EWS tumors towards differentiation. These results are consistent with our previous studies indicating that HDis can inhibit the growth and modulate differentiation of cells from other types of childhood pediatric tumors possibly originating from neural stem cells.
机译:迫切需要治疗EWING SARCOMA(EWS)的进步,一种具有可能神经分区的侵袭性儿童肿瘤。抑制组蛋白脱乙酰酶(HDAC)可以恢复异常的表观遗传状态并降低不同实验癌症类型的生长。在这里,我们研究了有效的HDAC抑制剂,丁酸钠(NAB)是否具有重新编程EWS细胞朝向更分化的状态并影响其生长和存活的能力。对Nab的两个EWS细胞系暴露导致HDAC活性的快速和有效的抑制(1?H,IC〜(50)1.5?mm)和细胞周期进展的重大逮捕(72?H,IC〜(50)0.68 -0.76?mm),标有G0 / G1累积。长期培养后,在EWS细胞中观察到延迟细胞增殖和降低的菌落形成能力。 Nab诱导的效果包括抑制细胞增殖的抑制,伴随着EWS-FLI1融合癌基因的转录表达减少,降低了关键存活和多能性相关基因的表达,并重新表达分化神经元标记βIIII-管蛋白。最后,Nab降低了C-Myc水平并在推定的EWS癌症干细胞中存活受损。我们的调查结果支持使用HDAC抑制作为损害细胞生长和生存的策略,并重新编程EWS肿瘤对分化。这些结果与我们以前的研究一致,表明HDIS可以抑制来自其他类型儿童儿科肿瘤的细胞的生长和调节细胞分化,可能是源自神经干细胞。

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