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全基因组分析髓母细胞瘤中的可变剪接,鉴定出与正常小脑发育特征相关的剪接模式。

Genome-wide analysis of alternative splicing in medulloblastoma identifies splicing patterns characteristic of normal cerebellar development.

机构信息

Molecular Haematology and Cancer Biology Unit and Neural Development Unit, UCL Institute of Child Health, Great Ormond Street Hospital for Children NHS Trust, London, United Kingdom.

出版信息

Cancer Res. 2011 Mar 15;71(6):2045-55. doi: 10.1158/0008-5472.CAN-10-2519. Epub 2011 Jan 19.

Abstract

Alternative splicing is an important mechanism for the generation of protein diversity at a post-transcriptional level. Modifications in the splicing patterns of several genes have been shown to contribute to the malignant transformation of different tissue types. In this study, we used the Affymetrix Exon arrays to investigate patterns of differential splicing between pediatric medulloblastomas and normal cerebellum on a genome-wide scale. Of the 1,262 genes identified as potentially generating tumor-associated splice forms, we selected 14 examples of differential splicing of known cassette exons and successfully validated 11 of them by reverse transcriptase PCR. The pattern of differential splicing of three validated events was characteristic for the molecular subset of sonic hedgehog (Shh)-driven medulloblastomas, suggesting that their unique gene signature includes the expression of distinctive transcript variants. Generally, we observed that tumor and normal fetal cerebellar samples shared significantly lower exon inclusion rates than normal adult cerebellum. We investigated whether tumor-associated splice forms were expressed in primary cultures of Shh-dependent mouse cerebellar granule cell precursors (GCP) and found that Shh caused a decrease in the cassette exon inclusion rate of five of the seven tested genes. Furthermore, we observed a significant increase in exon inclusion between postnatal days 7 and 14 of mouse cerebellar development, at the time when GCPs mature into postmitotic neurons. We conclude that inappropriate splicing frequently occurs in human medulloblastomas and may be linked to the activation of developmental signaling pathways and a failure of cerebellar precursor cells to differentiate.

摘要

可变剪接是在转录后水平产生蛋白质多样性的重要机制。已经证明,几个基因剪接模式的改变有助于不同组织类型的恶性转化。在这项研究中,我们使用 Affymetrix Exon 芯片在全基因组范围内研究了小儿髓母细胞瘤与正常小脑之间的差异剪接模式。在所鉴定的 1262 个可能产生肿瘤相关剪接形式的基因中,我们选择了 14 个已知的外显子剪接差异的例子,并通过逆转录 PCR 成功验证了其中的 11 个。三个验证事件的剪接差异模式是声猬(Shh)驱动的髓母细胞瘤的分子亚群特征,表明其独特的基因特征包括表达独特的转录变体。一般来说,我们观察到肿瘤和正常胎儿小脑样本的外显子包含率明显低于正常成人小脑。我们研究了肿瘤相关的剪接形式是否在依赖 Shh 的小鼠小脑颗粒细胞前体(GCP)的原代培养物中表达,发现 Shh 导致七个测试基因中有五个的外显子剪接率降低。此外,我们观察到在小鼠小脑发育的第 7 天到第 14 天之间,即 GCP 成熟为有丝分裂后神经元时,外显子包含率显著增加。我们的结论是,人类髓母细胞瘤中经常发生异常剪接,这可能与发育信号通路的激活和小脑前体细胞分化失败有关。

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