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在 p53 缺陷的肌肉干细胞再生过程中,合子 Dux 因子的致癌扩增定义了一种分子癌症亚型。

Oncogenic Amplification of Zygotic Dux Factors in Regenerating p53-Deficient Muscle Stem Cells Defines a Molecular Cancer Subtype.

机构信息

Department of Cardiac Development and Remodeling, Max-Planck-Institute for Heart and Lung Research, Bad Nauheim, Germany; Bioinformatics Core Unit (BCU), Max Planck Institute for Heart and Lung Research, Bad Nauheim, Germany.

Department of Cardiac Development and Remodeling, Max-Planck-Institute for Heart and Lung Research, Bad Nauheim, Germany.

出版信息

Cell Stem Cell. 2018 Dec 6;23(6):794-805.e4. doi: 10.1016/j.stem.2018.10.011. Epub 2018 Nov 15.

Abstract

The identity of tumor-initiating cells in many cancer types is unknown. Tumors often express genes associated with embryonic development, although the contributions of zygotic programs to tumor initiation and formation are poorly understood. Here, we show that regeneration-induced loss of quiescence in p53-deficient muscle stem cells (MuSCs) results in rhabdomyosarcoma formation with 100% penetrance. Genomic analyses of purified tumor cells revealed spontaneous and discrete oncogenic amplifications in MuSCs that drive tumorigenesis, including, but not limited to, the amplification of the cleavage-stage Dux transcription factor (TF) Duxbl. We further found that Dux factors drive an early embryonic gene signature that defines a molecular subtype across a broad range of human cancers. Duxbl initiates tumorigenesis by enforcing a mesenchymal-to-epithelial transition, and targeted inactivation of Duxbl specifically in Duxbl-expressing tumor cells abolishes their expansion. These findings reveal how regeneration and genomic instability can interact to activate zygotic genes that drive tumor initiation and growth.

摘要

在许多癌症类型中,肿瘤起始细胞的身份尚不清楚。肿瘤通常表达与胚胎发育相关的基因,尽管胚胎程序对肿瘤起始和形成的贡献还知之甚少。在这里,我们表明,p53 缺陷型肌肉干细胞 (MuSCs) 中再生诱导的静止丧失导致横纹肌肉瘤的形成,其发生率为 100%。对纯化的肿瘤细胞的基因组分析显示,MuSCs 中自发且离散的致癌扩增驱动肿瘤发生,包括但不限于,早期胚胎转录因子 Duxbl 的扩增。我们进一步发现,Dux 因子驱动一个早期胚胎基因特征,该特征定义了广泛的人类癌症中的一个分子亚型。Duxbl 通过强制进行间质到上皮的转变来引发肿瘤发生,并且靶向性地灭活仅在表达 Duxbl 的肿瘤细胞中表达的 Duxbl 可消除其扩增。这些发现揭示了再生和基因组不稳定性如何相互作用以激活驱动肿瘤起始和生长的合子基因。

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