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依托泊苷处理后的胚胎癌细胞中 Oct4A 增强子的 DNA 甲基化与可逆转衰老细胞中的选择性剪接和多能性改变有关。

DNA methylation of the Oct4A enhancers in embryonal carcinoma cells after etoposide treatment is associated with alternative splicing and altered pluripotency in reversibly senescent cells.

机构信息

a August Kirchenstein Institute of Microbiology and Virology, Riga Stradins University , Ratsupites 5, LV-1067 Riga , Latvia.

b Latvian Biomedical Research & Study Centre , Ratsupites 1, Riga LV-1067 , Latvia.

出版信息

Cell Cycle. 2018;17(3):362-366. doi: 10.1080/15384101.2018.1426412. Epub 2018 Mar 19.

Abstract

The epigenetic mechanisms underlying chemoresistance in cancer cells resulting from drug-induced reversible senescence are poorly understood. Chemoresistant ESC-like embryonal carcinoma PA1 cells treated with etoposide (ETO) were previously found to undergo prolonged G2 arrest with transient p53-dependent upregulation of opposing fate regulators, p21CIP1 (senescence) and OCT4A (self-renewal). Here we report on the analysis of the DNA methylation state of the distal enhancer (DE) and proximal enhancer (PE) of the Oct4A gene during this dual response. When compared to non-treated controls the methylation level increased from 1.3% to 12.5% and from 3% to 19.4%, in the DE and PE respectively. It included CpG and non-CpG methylation, which was not chaotic but presented two patterns in each enhancer. Discorrelating with methylation of enhancers, the transcription of Oct4A increased, however, a strong expression of the splicing form Oct4B was also induced, along with down-regulation of the Oct4A partners of in the pluripotency/self-renewal network Sox2 and Lin28. WB demonstrated disjoining of the OCT4A protein from the chromatin-bound fraction. In survival clones, methylation of the DE was considerably erased, while some remnant of methylation of the PE was still observed. The alternative splicing for Oct4B was reduced, Oct4A level insignificantly decreased, while the expression of Sox2 and Lin28 recovered, all three became proportionally above the control. These findings indicate the involvement of the transient patterned methylation of the Oct4A enhancers and alternative splicing in the adaptive regulation of cell fate choice during the p53-dependant dual state of reversible senescence in ESC-like cancer stem cells.

摘要

癌症细胞中由药物诱导的可逆衰老引起的化疗耐药的表观遗传机制尚不清楚。先前发现,用依托泊苷(ETO)处理的化疗耐药 ESC 样胚胎癌细胞 PA1 经历了长时间的 G2 期阻滞,同时短暂地上调了相反命运调节剂,p21CIP1(衰老)和 OCT4A(自我更新)。在这里,我们报告了在这种双重反应过程中分析 Oct4A 基因的远端增强子(DE)和近端增强子(PE)的 DNA 甲基化状态。与未处理的对照相比,DE 和 PE 的甲基化水平分别从 1.3%增加到 12.5%和从 3%增加到 19.4%。它包括 CpG 和非 CpG 甲基化,这些甲基化不是杂乱无章的,而是在每个增强子中呈现两种模式。与增强子的甲基化不同,Oct4A 的转录增加,但也诱导了 Oct4B 的剪接形式的强烈表达,同时下调了多能性/自我更新网络中的 Oct4A 伙伴 Sox2 和 Lin28。WB 表明 OCT4A 蛋白从染色质结合部分解离。在存活克隆中,DE 的甲基化被大量消除,而 PE 的一些甲基化残留仍然存在。Oct4B 的选择性剪接减少,Oct4A 水平显著降低,而 Sox2 和 Lin28 的表达恢复,三者都高于对照的比例。这些发现表明,在 ESC 样癌细胞的 p53 依赖性可逆衰老的双态中,OCT4A 增强子的瞬时模式化甲基化和选择性剪接参与了细胞命运选择的适应性调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d373/5914730/cfd83120acdf/kccy-17-03-1426412-g001.jpg

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