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MUC1-C drives MYC in multiple myeloma

机译:MUC1-C在多发性骨髓瘤中驱动MYC

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Multiple myeloma (MM) cell lines and primary tumor cells are addicted to the MYC oncoprotein for survival. Little is known, however, about how MYC expression is upregulated in MM cells. The mucin 1 C-terminal subunit (MUC1-C) is an oncogenic transmembrane protein that is aberrantly expressed in MM cell lines and primary tumor samples. The present studies demonstrate that targeting MUC1-C with silencing by clustered regularly interspaced short palindromic repeat (CRISPR)/CRISPR-associated protein 9 editing or with the GO-203 inhibitor is associated with downregulation of MYC messenger RNA and protein. The results show that MUC1-C occupies the MYC promoter and thereby activates the MYC gene by a beta-catenin/transcription factor 4 (TCF4)-mediated mechanism. In this way, MUC1-C (1) increases beta-catenin occupancy on the MYC promoter, (2) forms a complex with beta-catenin and TCF4, and, in turn, (3) drives MYC transcription. Analysis of MM cells using quantitative real-time reverse transcription polymerase chain reaction arrays further demonstrated that silencing MUC1-C is associated with downregulation of MYC target genes, including CCND2, hTERT, and GCLC. Analysis of microarray data sets further demonstrated that MUC1 levels positively correlate with MYC expression in MM progression and in primary cells from over 800 MM patients. These findings collectively provide convincing evidence that MUC1-C drives MYC expression in MM.
机译:多发性骨髓瘤(MM)细胞系和原发性肿瘤细胞会因MYC癌蛋白而成瘾。然而,关于MMC中MYC表达如何被上调知之甚少。粘蛋白1 C末端亚基(MUC1-C)是致癌的跨膜蛋白,在MM细胞系和原发性肿瘤样品中异常表达。本研究表明,通过簇状规则间隔的短回文重复序列(CRISPR)/ CRISPR受体相关蛋白9编辑或GO-203抑制剂沉默靶向MUC1-C与MYC信使RNA和蛋白的下调有关。结果表明,MUC1-C占据MYC启动子,从而通过β-catenin/转录因子4(TCF4)介导的机制激活MYC基因。这样,MUC1-C(1)增加了MYC启动子上β-catenin的占有率,(2)与β-catenin和TCF4形成复合物,进而(3)驱动MYC转录。使用定量实时逆转录聚合酶链反应阵列分析MM细胞进一步证明,沉默MUC1-C与MYC靶基因的下调相关,包括CCND2,hTERT和GCLC。对微阵列数据集的分析进一步表明,在超过800例MM患者的MM进展和原代细胞中,MUC1水平与MYC表达呈正相关。这些发现共同提供了令人信服的证据,表明MUC1-C驱动MM中的MYC表达。

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