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首页> 外文期刊>Acta Neuropathologica >OTX2 sustains a bivalent-like state of OTX2-bound promoters in medulloblastoma by maintaining their H3K27me3 levels.
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OTX2 sustains a bivalent-like state of OTX2-bound promoters in medulloblastoma by maintaining their H3K27me3 levels.

机译:OTX2通过维持它们的H3K27me3水平在髓母细胞瘤中维持OTX2结合启动子的二价状态。

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摘要

Recent studies showed frequent mutations in histone H3 lysine 27 (H3K27) demethylases in medulloblastomas of Group 3 and Group 4, suggesting a role for H3K27 methylation in these tumors. Indeed, trimethylated H3K27 (H3K27me3) levels were shown to be higher in Group 3 and 4 tumors compared to WNT and SHH medulloblastomas, also in tumors without detectable mutations in demethylases. Here, we report that polycomb genes, required for H3K27 methylation, are consistently upregulated in Group 3 and 4 tumors. These tumors show high expression of the homeobox transcription factor OTX2. Silencing of OTX2 in D425 medulloblastoma cells resulted in downregulation of polycomb genes such as EZH2, EED, SUZ12 and RBBP4 and upregulation of H3K27 demethylases KDM6A, KDM6B, JARID2 and KDM7A. This was accompanied by decreased H3K27me3 and increased H3K27me1 levels in promoter regions. Strikingly, the decrease of H3K27me3 was most prominent in promoters that bind OTX2. OTX2-bound promoters showed high levels of the H3K4me3 and H3K9ac activation marks and intermediate levels of the H3K27me3 inactivation mark, reminiscent of a bivalent modification. After silencing of OTX2, H3K27me3 levels strongly dropped, but H3K4me3 and H3K9ac levels remained high. OTX2-bound bivalent genes showed high expression levels in D425, but the expression of most of these genes did not change after OTX2 silencing and loss of the H3K27me3 mark. Maintaining promoters in a bivalent state by sustaining H3K27 trimethylation therefore seems to be an important function of OTX2 in medulloblastoma, while other transcription factors might regulate the actual expression levels of these genes.
机译:最近的研究表明,第3组和第4组的髓母细胞瘤中的组蛋白H3赖氨酸27(H3K27)脱甲基酶频繁突变,表明H3K27甲基化在这些肿瘤中的作用。实际上,与WNT和SHH髓母细胞瘤相比,在第3组和第4组肿瘤中三甲基化的H3K27(H3K27me3)水平显示更高,在无脱甲基酶突变的肿瘤中也是如此。在这里,我们报道了H3K27甲基化所需的多梳基因在3组和4组肿瘤中始终被上调。这些肿瘤显示同源盒转录因子OTX2的高表达。 D425髓母细胞瘤细胞中OTX2的沉默导致多梳基因(例如EZH2,EED,SUZ12和RBBP4)的下调以及H3K27脱甲基酶KDM6A,KDM6B,JARID2和KDM7A的上调。这伴随着启动子区域H3K27me3的减少和H3K27me1的水平的增加。令人惊讶的是,H3K27me3的减少在结合OTX2的启动子中最为明显。与OTX2结合的启动子显示出高水平的H3K4me3和H3K9ac激活标记,以及中等水平的H3K27me3失活标记,让人联想到二价修饰。在OTX2沉默后,H3K27me3的水平强烈下降,但H3K4me3和H3K9ac的水平仍然很高。 OTX2绑定的二价基因在D425中显示出高表达水平,但是大多数这些基因的表达在OTX2沉默和H3K27me3标记缺失后没有改变。因此,通过维持H3K27三甲基化将启动子维持在二价状态似乎是OTX2在髓母细胞瘤中的重要功能,而其他转录因子可能会调节这些基因的实际表达水平。

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