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Dissecting the impact of regional identity and the oncogenic role of human-specific NOTCH2NL in an hESC model of H3.3G34R-mutant glioma

机译:剖析区域认同的影响和人类特异性NOTCH2NL在 H3.3G34R 突变神经胶质瘤 hESC 模型中的致癌作用

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摘要

H3.3G34R-mutant gliomas are lethal tumors of the cerebral hemispheres with unknown mechanisms of regional specificity and tumorigenicity. We developed a human embryonic stem cell (hESC)-based model of H3.3G34R-mutant glioma that recapitulates the key features of the tumors with cell-type specificity to forebrain interneuronal progenitors but not hindbrain precursors. We show that H3.3G34R, ATRX, and TP53 mutations cooperatively impact alternative RNA splicing events, particularly suppression of intron retention. This leads to increased expression of components of the Notch pathway, notably NOTCH2NL, a human-specific gene family. We also uncover a parallel mechanism of enhanced NOTCH2NL expression via genomic amplification of its locus in some H3.3G34R-mutant tumors. These findings demonstrate a novel mechanism whereby evolutionary pathways that lead to larger brain size in humans are co-opted to drive tumor growth.
机译:H3.3G34R突变型神经胶质瘤是致死性脑半球肿瘤,具有未知的区域特异性和致瘤性机制。我们开发了一种基于人胚胎干细胞 (hESC) 的 H3.3G34R 突变神经胶质瘤模型,该模型概括了肿瘤的关键特征,对前脑中间神经元祖细胞具有细胞类型特异性,但对后脑前体不具有特异性。我们发现 H3.3G34R、ATRX 和 TP53 突变协同影响替代性 RNA 剪接事件,特别是抑制内含子保留。这导致Notch通路组分的表达增加,特别是人类特异性基因家族NOTCH2NL。我们还揭示了在一些H3.3G34R突变肿瘤中通过其基因座的基因组扩增增强NOTCH2NL表达的平行机制。这些发现证明了一种新的机制,即导致人类大脑尺寸更大的进化途径被选择来驱动肿瘤生长。

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