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首页> 外文期刊>Nature Genetics >Fusion of TTYH1 with the C19MC microRNA cluster drives expression of a brain-specific DNMT3B isoform in the embryonal brain tumor ETMR
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Fusion of TTYH1 with the C19MC microRNA cluster drives expression of a brain-specific DNMT3B isoform in the embryonal brain tumor ETMR

机译:TTYH1与C19MC microRNA簇的融合驱动胚胎脑肿瘤ETMR中脑特异性DNMT3B亚型的表达

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摘要

Embryonal tumors with multilayered rosettes (ETMRs) are rare, deadly pediatric brain tumors characterized by high-level amplification of the microRNA cluster C19MC. We performed integrated genetic and epigenetic analyses of 12 ETMR samples and identified, in all cases, C19MC fusions to TTYH1 driving expression of the microRNAs. ETMR tumors, cell lines and xenografts showed a specific DNA methylation pattern distinct from those of other tumors and normal tissues. We detected extreme overexpression of a previously uncharacterized isoform of DNMT3B originating at an alternative promoter that is active only in the first weeks of neural tube development. Transcriptional and immunohistochemical analyses suggest that C19MC-dependent DNMT3B deregulation is mediated by RBL2, a known repressor of DNMT3B. Transfection with individual C19MC microRNAs resulted in DNMT3B upregulation and RBL2 downregulation in cultured cells. Our data suggest a potential oncogenic re-engagement of an early developmental program in ETMR via epigenetic alteration mediated by an embryonic, brain-specific DNMT3B isoform.
机译:带有多层玫瑰花结(ETMR)的胚胎性肿瘤是罕见的致命小儿脑肿瘤,其特征是microRNA簇C19MC的高水平扩增。我们对12个ETMR样品进行了综合的遗传和表观遗传学分析,并在所有情况下均确定了C19MC与TTYH1融合蛋白的表达,从而驱动了microRNA的表达。 ETMR肿瘤,细胞系和异种移植物表现出不同于其他肿瘤和正常组织的特定DNA甲基化模式。我们检测到DNMT3B以前未表征的同工型的极端过表达,该异构体起源于仅在神经管发育的最初几周才有活性的替代启动子。转录和免疫组织化学分析表明,C19MC依赖的DNMT3B的失调是由已知的DNMT3B阻遏物RBL2介导的。用单个C19MC microRNA转染导致DNMT3B上调和RBL2下调。我们的数据表明,通过胚胎,大脑特异性DNMT3B亚型介导的表观遗传学改变,ETMR的早期发育程序可能会再次致癌。

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