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Smyd3 Is a Transcriptional Potentiator of Multiple Cancer-Promoting Genes and Required for Liver and Colon Cancer Development

机译:Smyd3是多种促癌基因的转录增强子,是肝癌和结肠癌发展所必需的

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摘要

Smyd3 is a protein methyltransferase implicated in cancer development. Here we show that Smyd3 expression in mice is required for chemically induced liver and colon cancer formation. In these organs Smyd3 functions in the nucleus, stimulating the transcription of several key regulators involved in cell proliferation, epithelial-mesenchymal transition, the JAK/Stat3 oncogenic pathway, as well as the Myc and Ctnnb1 oncogenes. Smyd3 interacts with H3K4Me3-modified histone tails, which facilitates its recruitment to the core promoter regions of most active genes. Smyd3 binding density on target genes positively correlates with increased RNA polymerase-II density and transcriptional outputs. Despite its widespread distribution, the transcription-potentiating function of Smyd3 is restricted to a particular set of genes, whose expression is induced specifically during carcinogenesis.
机译:Smyd3是一种蛋白质甲基转移酶,与癌症发展有关。在这里,我们显示Smyd3在小鼠中的表达是化学诱导肝癌和结肠癌形成所必需的。在这些器官中,Smyd3在细胞核中发挥功能,刺激参与细胞增殖,上皮-间质转化,JAK / Stat3致癌途径以及Myc和Ctnnb1致癌基因的几个关键调控因子的转录。 Smyd3与H3K4Me3修饰的组蛋白尾巴相互作用,这有助于其募集到大多数活性基因的核心启动子区域。靶基因上的Smyd3结合密度与增加的RNA聚合酶II密度和转录输出呈正相关。尽管其广泛分布,Smyd3的转录增强功能仅限于特定的一组基因,其表达在致癌过程中被特异性诱导。

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