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β-catenin represses miR455-3p to stimulate m6A modification of HSF1 mRNA and promote its translation in colorectal cancer

机译:β-catenin抑制miR455-3p以刺激HSF1 mRNA的M6A改性,促进整合癌中的翻译

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Heat shock transcription factor1 (HSF1) was overexpressed to promote glutaminolysis and activate mTOR in colorectal cancer (CRC). Here, we investigated the mechanism for cancer-specific overexpression of HSF1. HSF1 expression was analyzed by chromatin immunoprecipitation, qRT-PCR, immunohistochemistry staining and immunoblotting. HSF1 translation was explored by polysome profiling and nascent protein analysis. Biotin pulldown and m6A RNA immunoprecipitation were applied to investigate RNA/RNA interaction and m6A modification. The relevance of HSF1 to CRC was analyzed in APCmin/ and APCmin/ HSF1 /?mice. HSF1 expression and activity were reduced after the inhibition of WNT/β-catenin signaling by pyrvinium or β-catenin knockdown, but elevated upon its activation by lithium chloride (LiCl) or β-catenin overexpression. There are much less upregulated genes in HSF1-KO MEF treated with LiCl when compared with LiCl-treated WT MEF. HSF1 protein expression was positively correlated with β-catenin expression in cell lines and primary tissues. After β-catenin depletion, HSF1 mRNA translation was impaired, accompanied by the reduction of its m6A modification and the upregulation of miR455-3p, which can interact with 3′-UTR of HSF1 mRNA to repress its translation. Interestingly, inhibition of miR455-3p rescued β-catenin depletion-induced reduction of HSF1 m6A modification and METTL3 interaction. Both the size and number of tumors were significantly reduced in APCmin/ mice when HSF1 was genetically knocked-out or chemically inhibited. β-catenin suppresses miR455-3p generation to stimulate m6A modification and subsequent translation?of HSF1 mRNA. HSF1 is important for β-catenin to promote CRC development. Targeting HSF1 could be a potential strategy for the intervention of β-catenin-driven cancers.
机译:热冲击转录因子1(HSF1)过表达,以促进谷氨酸溶解和激活聚直肠癌(CRC)。在这里,我们研究了HSF1的癌症特异性过表达的机制。通过染色质免疫沉淀,QRT-PCR,免疫组织化学染色和免疫印迹分析HSF1表达。通过Polysome分析和新生蛋白质分析探索了HSF1翻译。施用生物素下拉和M6A RNA免疫沉淀,用于研究RNA / RNA相互作用和M6A改性。 HSF1至CRC的相关性在APCMIN /和APCMIN / HSF1 /?小鼠中分析。通过吡尼鎓或β-catenin敲低抑制Wnt /β-连环蛋白信号传导后,降低了HSF1表达和活性,但在其氯化锂(LICL)或β-连环蛋白过表达的活化后升高。与LiCL处理的WT MEF相比,使用LiCL处理的HSF1-KO MEF中有多少于较少的上调基因。 HSF1蛋白表达与细胞系和初级组织中的β-连环蛋白表达呈正相关。在β-连环蛋白耗竭后,HSF1 mRNA翻译损害,伴随其M6A改性的减少和MiR455-3P的上调,其可以与HSF1 mRNA的3'-UTR相互作用以压制其翻译。有趣的是,抑制miR455-3p拯救β-catenin耗尽诱导的HSF1 M6A改性和MetT13相互作用。当HSF1被遗传敲除或化学抑制时,APCMIN /小鼠的肿瘤尺寸和数量明显减少。 β-catenin抑制miR455-3p的产生以刺激M6a修饰和后续翻译?HSF1 mRNA。 HSF1对于β-catenin是促进CRC发育的重要性。靶向HSF1可能是β-catenin驱动的癌症干预的潜在策略。

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