首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >The histone H3.3K27M mutation in pediatric glioma reprograms H3K27 methylation and gene expression
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The histone H3.3K27M mutation in pediatric glioma reprograms H3K27 methylation and gene expression

机译:小儿神经胶质瘤中的组蛋白H3.3K27M突变可重编程H3K27甲基化和基因表达

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摘要

Recent studies have identified a Lys 27-to-methionine (K27M) mutation at one allele of H3F3A, one of the two genes encoding histone H3 variant H3.3, in 60% of highgrade pediatric glioma cases. The median survival of this group of patients after diagnosis is ~1 yr. Here we show that the levels of H3K27 di- and trimethylation (H3K27me2 and H3K27me3) are reduced globally in H3.3K27M patient samples due to the expression of the H3.3K27M mutant allele. Remarkably, we also observed that H3K27me3 and Ezh2 (the catalytic subunit of H3K27 methyltransferase) at chromatin are dramatically increased locally at hundreds of gene loci in H3.3K27M patient cells. Moreover, the gain of H3K27me3 and Ezh2 at gene promoters alters the expression of genes that are associated with various cancer pathways. These results indicate that H3.3K27M mutation reprograms epigenetic landscape and gene expression, which may drive tumorigenesis.
机译:最近的研究已经在60%的小儿神经胶质瘤病例中,在H3F3A的一个等位基因(编码组蛋白H3变体H3.3的两个基因之一)的等位基因上发现了Lys 27到甲硫氨酸(K27M)突变。诊断后,该组患者的中位生存期约为1年。在这里,我们显示由于H3.3K27M突变体等位基因的表达,H3.3K27M患者样品中的H3K27二甲基和三甲基化水平(H3K27me2和H3K27me3)整体降低。值得注意的是,我们还观察到染色质上的H3K27me3和Ezh2(H3K27甲基转移酶的催化亚基)在H3.3K27M患者细胞的数百个基因位点处局部显着增加。此外,H3K27me3和Ezh2在基因启动子上的获得改变了与各种癌症途径相关的基因的表达。这些结果表明,H3.3K27M突变可重新编程表观遗传学景观和基因表达,这可能会推动肿瘤发生。

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