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PP2A Deficiency Enhances Carcinogenesis of Lgr5+ Intestinal Stem Cells Both in Organoids and In Vivo

机译:PP2A缺乏会增强类器官和体内Lgr5 +肠干细胞的致癌性。

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摘要

In most cancers, cellular origin and the contribution of intrinsic and extrinsic factors toward transformation remain elusive. Cell specific carcinogenesis models are currently unavailable. To investigate cellular origin in carcinogenesis, we developed a tumorigenesis model based on a combination of carcinogenesis and genetically engineered mouse models. We show in organoids that treatment of any of three carcinogens, DMBA, MNU, or PhIP, with protein phosphatase 2A (PP2A) knockout induced tumorigenesis in Lgr5 intestinal lineage, but not in differentiated cells. These transformed cells increased in stem cell signature, were upregulated in EMT markers, and acquired tumorigenecity. A mechanistic approach demonstrated that tumorigenesis was dependent on Wnt, PI3K, and RAS-MAPK activation. In vivo combination with carcinogen and PP2A depletion also led to tumor formation. Using whole-exome sequencing, we demonstrate that these intestinal tumors display mutation landscape and core driver pathways resembling human intestinal tumor in The Cancer Genome Atlas (TCGA). These data provide a basis for understanding the interplay between extrinsic carcinogen and intrinsic genetic modification and suggest that PP2A functions as a tumor suppressor in intestine carcinogenesis.
机译:在大多数癌症中,细胞起源以及内在和外在因素对转化的贡献仍然难以捉摸。目前尚无细胞特异性致癌模型。为了研究致癌作用中的细胞起源,我们开发了一种基于致癌作用和基因工程小鼠模型相结合的肿瘤发生模型。我们在类器官中显示,用蛋白磷酸酶2A(PP2A)敲除处理三种致癌物(DMBA,MNU或PhIP)中的任何一种均可在Lgr5肠道谱系中诱导肿瘤发生,但在分化细胞中却不。这些转化的细胞在干细胞特征中增加,在EMT标记中上调,并具有致瘤性。一种机械方法表明,肿瘤发生取决于Wnt,PI3K和RAS-MAPK激活。体内与致癌物和PP2A耗竭的组合也导致肿瘤形成。使用全外显子组测序,我们证明这些肠肿瘤显示出类似于癌症基因组图谱(TCGA)中人肠肿瘤的突变态势和核心驱动器途径。这些数据为理解外在致癌物和内在遗传修饰之间的相互作用提供了基础,并表明PP2A在肠癌发生中起着抑癌作用。

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