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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Integrative genome analysis of somatic p53 mutant osteosarcomas identifies Ets2-dependent regulation of small nucleolar RNAs by mutant p53 protein
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Integrative genome analysis of somatic p53 mutant osteosarcomas identifies Ets2-dependent regulation of small nucleolar RNAs by mutant p53 protein

机译:体细胞P53突变体骨肉瘤的一体化基因组分析识别ETS2依赖于突变P53蛋白小核仁RNA的调控

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摘要

TP53 is the most frequently mutated gene in human cancer. Many mutant p53 proteins exert oncogenic gain-of-function (GOF) properties that contribute to metastasis, but the mechanisms mediating these functions remain poorly defined in vivo. To elucidate how mutant p53 GOF drives metastasis, we developed a traceable somatic osteosarcoma mouse model that is initiated with either a single p53 mutation (p53R172H) or p53 loss in osteoblasts. Our study confirmed that p53 mutant mice developed osteosarcomas with increased metastasis as compared with p53-null mice. Comprehensive transcriptome RNA sequencing (RNA-seq) analysis of 16 tumors identified a cluster of small nucleolar RNAs (snoRNAs) that are highly up-regulated in p53 mutant tumors. Regulatory element analysis of these deregulated snoRNA genes identified strong enrichment of a common Ets2 transcription factor-binding site. Homozygous deletion of Ets2 in p53 mutant mice resulted in strong down-regulation of snoRNAs and reversed the prometastatic phenotype of mutant p53 but had no effect on osteosarcoma development, which remained 100% penetrant. In summary, our studies identify Ets2 inhibition as a potential therapeutic vulnerability in p53 mutant osteosarcomas.
机译:TP53是人类癌症中最常见的基因。许多突变体P53蛋白施加致癌功能(GOF)的性质,其有助于转移,但调解这些功能的机制仍然在体内定义不足。为了阐明突变体P53 GOF驱动转移的方式,我们开发了一种可追踪的体细胞骨肉瘤小鼠模型,其在成骨细胞中用单个P53突变(P53R172H)或P53损失引发。我们的研究证实,与P53-含量小鼠相比,P53突变小鼠突出了骨肉瘤,其转移增加。 16颗粒的综合转录组RNA测序(RNA-SEQ)分析鉴定了在P53突变肿瘤中具有高度上调的小核核rNA(Snornas)的簇。这些令人讨厌的Snorna基因的调节元素分析鉴定了普通ETS2转录因子结合位点的强烈富集。 P53突变小鼠纯合的ETS2缺失导致突袭的突变调节强调,并逆转突变体P53的常孢子型表型,但对骨肉瘤发育没有影响,这仍然渗透100%。总之,我们的研究鉴定了ETS2抑制作P53突变体骨肉瘤中的潜在治疗脆弱性。

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