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首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >CLCA2 epigenetic regulation by CTBP1, HDACs, ZEB1, EP300 and miR‐196b‐5p impacts prostate cancer cell adhesion and EMT in metabolic syndrome disease
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CLCA2 epigenetic regulation by CTBP1, HDACs, ZEB1, EP300 and miR‐196b‐5p impacts prostate cancer cell adhesion and EMT in metabolic syndrome disease

机译:CTBP1,HDACS,Zeb1,EP300和MIR-196B-5P的CLCA2表观遗传调节会影响前列腺癌细胞的粘附和EMT在代谢综合征疾病中

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摘要

Prostate cancer (PCa) is the most common cancer among men. Metabolic syndrome (MeS) is associated with increased PCa aggressiveness and recurrence. Previously, we proposed C‐terminal binding protein 1 (CTBP1), a transcriptional co‐repressor, as a molecular link between these two conditions. Notably, CTBP1 depletion decreased PCa growth in MeS mice. The aim of this study was to investigate the molecular mechanisms that explain the link between MeS and PCa mediated by CTBP1. We found that CTBP1 repressed chloride channel accessory 2 ( CLCA2 ) expression in prostate xenografts developed in MeS animals. CTBP1 bound to CLCA2 promoter and repressed its transcription and promoter activity in PCa cell lines. Furthermore, we found that CTBP1 formed a repressor complex with ZEB1, EP300 and HDACs that modulates the CLCA2 promoter activity. CLCA2 promoted PCa cell adhesion inhibiting epithelial–mesenchymal transition (EMT) and activating CTNNB1 together with epithelial marker (CDH1) induction, and mesenchymal markers (SNAI2 and TWIST1) repression. Moreover, CLCA2 depletion in PCa cells injected subcutaneously in MeS mice increased the circulating tumor cells foci compared to control. A microRNA (miRNA) expression microarray from PCa xenografts developed in MeS mice, showed 21 miRNAs modulated by CTBP1 involved in angiogenesis, extracellular matrix organization, focal adhesion and adherents junctions, among others. We found that miR‐196b‐5p directly targets CLCA2 by cloning CLCA2 3′UTR and performing reporter assays. Altogether, we identified a new molecular mechanism to explain PCa and MeS link based on CLCA2 repression by CTBP1 and miR‐196b‐5p molecules that might act as key factors in the progression onset of this disease.
机译:前列腺癌(PCA)是男性中最常见的癌症。代谢综合征(MES)与PCA侵略性和复发增加有关。以前,我们提出了C-末端结合蛋白1(CTBP1),转录副压制剂,作为这两个条件之间的分子链接。值得注意的是,CTBP1耗竭降低了MES小鼠的PCA生长。本研究的目的是研究解释由CTBP1介导的MES和PCA之间的联系的分子机制。我们发现,在MES动物中,CTBP1抑制氯化物通道辅助部2(CLCA2)表达中的前列腺异叶移植物。 CTBP1与CLCA2启动子结合并在PCA细胞系中抑制其转录和启动子活性。此外,我们发现CTBP1与ZeB1,EP300和HDAC组成的阻遏物复合物,其调节CLCA2启动子活性。 CLCA2促进了PCA细胞粘附抑制上皮 - 间充质转变(EMT)并与上皮标记(CDH1)诱导和间充质标记物(SNAI2和TWICK1)抑制一起激活CTNNB1。此外,在MES小鼠中皮下注射的PCA细胞中的CLCA2耗竭增加与对照相比,循环肿瘤细胞焦点增加。来自MES小鼠的PCA异种移植物的microRNA(miRNA)表达微阵列显示出由CTBP1调节的21 miRNA,参与血管生成,细胞外基质组织,局灶性粘附和辅助结等。我们发现MiR-196B-5P通过克隆CLCA2 3'UTR并进行记者测定,直接针对CLCA2。完全,我们确定了一种新的分子机制,用于解释基于CTBP1和MIR-196B-5P分子的CLCA2抑制的PCA和MES链接,这可能是这种疾病进展的关键因素。

著录项

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  • 作者单位

    Laboratorio de Oncología Molecular y Nuevos Blancos Terapéuticos Instituto de Biología y Medicina;

    Laboratorio de Oncología Molecular y Nuevos Blancos Terapéuticos Instituto de Biología y Medicina;

    Laboratorio de Oncología Molecular y Nuevos Blancos Terapéuticos Instituto de Biología y Medicina;

    Laboratorio de Oncología Molecular y Nuevos Blancos Terapéuticos Instituto de Biología y Medicina;

    Laboratorio de Oncología Molecular y Nuevos Blancos Terapéuticos Instituto de Biología y Medicina;

    Department of PharmacologySimmons Cancer Institute Southern Illinois University School of;

    Centro de Investigaciones sobre Porfirinas y Porfirias (CIPYP) Hospital de ClínicasArgentina;

    Laboratorio de Fisiología y Biología Tumoral del Ovario Instituto de Biología y Medicina;

    Laboratorio de Oncología Molecular Universidad Nacional de CórdobaArgentina;

    Department of Pathology and Cell BiologyColumbia University Medical CenterNew York NY;

    Laboratorio de Oncología Molecular y Nuevos Blancos Terapéuticos Instituto de Biología y Medicina;

    Laboratorio de Oncología Molecular y Nuevos Blancos Terapéuticos Instituto de Biología y Medicina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学 ;
  • 关键词

    metabolic syndrome; CTBP1; prostate cancer; CLCA2; miR‐196b;

    机译:代谢综合征;CTBP1;前列腺癌;CLCA2;MIR-196B;

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