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声波刺猬(SHH)转录调控的悖论:替代转录起始会忽略下游启动子 DNA 甲基化的影响。

Paradox of sonic hedgehog (SHH) transcriptional regulation: Alternative transcription initiation overrides the effect of downstream promoter DNA methylation.

机构信息

Molecular Oncology Group, Institute of Pathology, Medical Faculty of the RWTH Aachen University, Aachen, Germany.

出版信息

Epigenetics. 2011 Apr;6(4):465-77. doi: 10.4161/epi.6.4.14952. Epub 2011 Apr 1.

Abstract

Recently, DNA methylation has been suggested as a potential mechanism involved in the transcriptional regulation of SHH gene expression in cancer. However, detailed analyses on the underlying transcriptional mechanisms of SHH expression have not been presented so far and were therefore the focus of this study. We found that the genomic region of SHH contains two different transcriptional start sites and four CpG islands spread from the 5' promoter region to the 3' end of the SHH gene. Based on this CpG island topology we analyzed the influence of DNA methylation within the promoter region as well as in exon 2 and exon 3 on SHH mRNA expression in a large set (n = 14) of benign and malignant human cell lines, and further elucidated the functionality of the two identified SHH transcription initiation sites. Methylation-specific PCR (MSP) clearly showed that SHH is expressed independently of DNA methylation within exon 2 and exon 3 of its genomic region, while methylation of the promoter region is able to abrogate SHH expression. Most interesting, we found activation of the upstream SHH promoter in several breast cancer cell lines when the downstream SHH promoter is methylated. These observations lead us to propose a transcriptional model for the SHH gene, in which combined mechanisms of DNA methylation and alternative promoter usage coordinate the transcriptional activity of this important developmental gene.

摘要

最近,DNA 甲基化被认为是参与癌症中 SHH 基因表达转录调控的潜在机制。然而,目前尚未提出关于 SHH 表达的潜在转录机制的详细分析,因此这是本研究的重点。我们发现,SHH 的基因组区域包含两个不同的转录起始位点和四个从 5'启动子区域延伸到 SHH 基因 3'端的 CpG 岛。基于该 CpG 岛结构,我们分析了启动子区域以及外显子 2 和外显子 3 内的 DNA 甲基化对 14 个人类良性和恶性细胞系中 SHH mRNA 表达的影响,并进一步阐明了两个鉴定的 SHH 转录起始位点的功能。甲基化特异性 PCR(MSP)清楚地表明,SHH 的表达独立于其基因组区域中外显子 2 和外显子 3 内的 DNA 甲基化,而启动子区域的甲基化能够使 SHH 表达失活。最有趣的是,当下游 SHH 启动子甲基化时,我们在一些乳腺癌细胞系中发现了上游 SHH 启动子的激活。这些观察结果使我们提出了一个 SHH 基因的转录模型,其中 DNA 甲基化和替代启动子使用的组合机制协调了这个重要发育基因的转录活性。

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