首页> 外文期刊>Clinical cancer research: an official journal of the American Association for Cancer Research >Altered DNA methylation landscapes of polycomb-repressed loci are associated with prostate cancer progression and ERG oncogene expression in prostate cancer
【24h】

Altered DNA methylation landscapes of polycomb-repressed loci are associated with prostate cancer progression and ERG oncogene expression in prostate cancer

机译:polycomb抑制基因座的DNA甲基化景观的改变与前列腺癌的进展和前列腺癌中ERG癌基因的表达有关

获取原文
获取原文并翻译 | 示例

摘要

Purpose: To assess differentially methylated "landscapes" according to prostate cancer Gleason score (GS) and ERG oncogene expression status, and to determine the extent of polycomb group (PcG) target gene involvement, we sought to assess the genome-wide DNA methylation profile of prostate cancer according to Gleason score and ERG expression. Experimental Design: Genomic DNA from 39 prostate cancer specimens was hybridized to CpG island microarrays through differential methylation hybridization. We compared methylation profiles between Gleason score and ERG expression status as well as Gleason score stratified by ERG expression status. In addition, we compared results from our dataset to publicly available datasets of histone modifications in benign prostate cells. Results: We discovered hundreds of distinct differentially methylated regions (DMR) associated with increasing Gleason score and ERG. Furthermore, the number of DMRs associated with Gleason score was greatly expanded by stratifying samples into ERG-positive versus ERG-negative, with ERG-positive/GS-associated DMRs being primarily hypermethylated as opposed to hypomethylated. Finally, we found that there was a significant overlap between either Gleason score-related or ERG-hypermethylated DMRs and distinct regions in benign epithelial cells that have PcG signatures (H3K27me3, SUZ12) and lack active gene expression signatures (H3K4me3, RNA pol II). Conclusions: This work defines methylation landscapes of prostate cancer according to Gleason score, and suggests that initiating genetic events may influence the prostate cancer epigenome, which is further perturbed as prostate cancer progresses. Moreover, CpG islands with silent chromatin signatures in benign cells are particularly susceptible to prostate cancer-related hypermethylation.
机译:目的:为了根据前列腺癌格里森评分(GS)和ERG癌基因表达状态评估差异甲基化的“景观”,并确定多梳子组(PcG)目标基因的参与程度,我们寻求评估全基因组DNA甲基化谱根据格里森评分和ERG表达对前列腺癌的诊断。实验设计:通过差异甲基化杂交,将39个前列腺癌标本的基因组DNA与CpG岛微阵列杂交。我们比较了Gleason评分和ERG表达状态以及按ERG表达状态分层的Gleason评分之间的甲基化谱。此外,我们将数据集的结果与良性前列腺细胞中组蛋白修饰的公开数据集进行了比较。结果:我们发现了数百个与增加的格里森评分和ERG相关的不同的甲基化差异区域(DMR)。此外,通过将样品分层为ERG阳性和ERG阴性,大大增加了与格里森评分相关的DMR的数量,其中ERG阳性/ GS相关的DMR主要被高甲基化,而不是低甲基化。最后,我们发现,格里森评分相关或ERG高甲基化DMR与良性上皮细胞中具有PcG签名(H3K27me3,SUZ12)且缺乏活跃的基因表达签名(H3K4me3,RNA pol II)的不同区域之间存在显着重叠。结论:这项工作根据格里森评分定义了前列腺癌的甲基化态势,并表明启动遗传事件可能会影响前列腺癌的表观基因组,随着前列腺癌的进展,该基因组会进一步受到干扰。此外,在良性细胞中具有沉默染色质特征的CpG岛特别容易受到前列腺癌相关的甲基化的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号