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超级增强子定义神经母细胞瘤的调控亚型和细胞身份。

Super enhancers define regulatory subtypes and cell identity in neuroblastoma.

机构信息

Hopp Children's Cancer Center Heidelberg (KiTZ), Heidelberg, Germany.

Division of Neuroblastoma Genomics, German Cancer Research Center, Heidelberg, Germany.

出版信息

Nat Cancer. 2021 Jan;2(1):114-128. doi: 10.1038/s43018-020-00145-w. Epub 2020 Dec 7.

Abstract

Half of the children diagnosed with neuroblastoma (NB) have high-risk disease, disproportionately contributing to overall childhood cancer-related deaths. In addition to recurrent gene mutations, there is increasing evidence supporting the role of epigenetic deregulation in disease pathogenesis. Yet, comprehensive cis-regulatory network descriptions from NB are lacking. Here, using genome-wide H3K27ac profiles across 60 NBs, covering the different clinical and molecular subtypes, we identified four major super-enhancer-driven epigenetic subtypes and their underlying master regulatory networks. Three of these subtypes recapitulated known clinical groups; namely, MYCN-amplified, MYCN non-amplified high-risk and MYCN non-amplified low-risk NBs. The fourth subtype, exhibiting mesenchymal characteristics, shared cellular identity with multipotent Schwann cell precursors, was induced by RAS activation and was enriched in relapsed disease. Notably, CCND1, an essential gene in NB, was regulated by both mesenchymal and adrenergic regulatory networks converging on distinct super-enhancer modules. Overall, this study reveals subtype-specific super-enhancer regulation in NBs.

摘要

一半被诊断患有神经母细胞瘤 (NB) 的儿童患有高危疾病,不成比例地导致了整体儿童癌症相关死亡。除了反复发生的基因突变外,越来越多的证据支持表观遗传失调在疾病发病机制中的作用。然而,NB 缺乏全面的顺式调控网络描述。在这里,我们使用了 60 个 NB 样本的全基因组 H3K27ac 图谱,涵盖了不同的临床和分子亚型,鉴定了四个主要的超级增强子驱动的表观遗传亚型及其潜在的主调控网络。其中三个亚型重现了已知的临床分组;即 MYCN 扩增、MYCN 非扩增高危和 MYCN 非扩增低危 NB。第四个亚型表现出间充质特征,与多能雪旺细胞前体具有细胞同一性,由 RAS 激活诱导,在复发疾病中富集。值得注意的是,NB 中的必需基因 CCND1 受间充质和肾上腺素能调控网络的共同调控,这些网络都集中在不同的超级增强子模块上。总的来说,这项研究揭示了 NB 中特定亚型的超级增强子调控。

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