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首页> 外文期刊>BMC Cancer >The cancer gene WWOX behaves as an inhibitor of SMAD3 transcriptional activity via direct binding
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The cancer gene WWOX behaves as an inhibitor of SMAD3 transcriptional activity via direct binding

机译:癌症基因WWOX通过直接结合充当SMAD3转录活性的抑制剂

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Background The WW domain containing protein WWOX has been postulated to behave as a tumor suppressor in breast and other cancers. Expression of this protein is lost in over 70% of ER negative tumors. This prompted us to investigate the phenotypic and gene expression effects of loss of WWOX expression in breast cells. Methods Gene expression microarrays and standard in vitro assays were performed on stably silenced WWOX (shRNA) normal breast cells. Bioinformatic analyses were used to identify gene networks and transcriptional regulators affected by WWOX silencing. Co-immunoprecipitations and GST-pulldowns were used to demonstrate a direct interaction between WWOX and SMAD3. Reporter assays, ChIP, confocal microscopy and in silico analyses were employed to determine the effect of WWOX silencing on TGFβ-signaling. Results WWOX silencing affected cell proliferation, motility, attachment and deregulated expression of genes involved in cell cycle, motility and DNA damage. Interestingly, we detected an enrichment of targets activated by the SMAD3 transcription factor, including significant upregulation of ANGPTL4 , FST, PTHLH and SERPINE1 transcripts. Importantly, we demonstrate that the WWOX protein physically interacts with SMAD3 via WW domain 1. Furthermore, WWOX expression dramatically decreases SMAD3 occupancy at the ANGPTL4 and SERPINE1 promoters and significantly quenches activation of a TGFβ responsive reporter. Additionally, WWOX expression leads to redistribution of SMAD3 from the nuclear to the cytoplasmic compartment. Since the TGFβ target ANGPTL4 plays a key role in lung metastasis development, we performed a meta-analysis of ANGPTL4 expression relative to WWOX in microarray datasets from breast carcinomas. We observed a significant inverse correlation between WWOX and ANGPTL4 . Furthermore, the WWOX lo /ANGPTL4 hi cluster of breast tumors is enriched in triple-negative and basal-like sub-types. Tumors with this gene expression signature could represent candidates for anti-TGFβ targeted therapies. Conclusions We show for the first time that WWOX modulates SMAD3 signaling in breast cells via direct WW-domain mediated binding and potential cytoplasmic sequestration of SMAD3 protein. Since loss of WWOX expression increases with breast cancer progression and it behaves as an inhibitor of SMAD3 transcriptional activity these observations may help explain, at least in part, the paradoxical pro-tumorigenic effects of TGFβ signaling in advanced breast cancer.
机译:背景技术含有WWOX蛋白质的WW结构域已被假定在乳腺癌和其他癌症中起着抑癌作用。该蛋白的表达在70%以上的ER阴性肿瘤中丢失。这促使我们研究乳腺细胞中WWOX表达缺失的表型和基因表达影响。方法在稳定沉默的WWOX(shRNA)正常乳腺细胞上进行基因表达芯片和标准体外测定。生物信息学分析用于鉴定受WWOX沉默影响的基因网络和转录调控因子。共免疫沉淀和GST下拉被用来证明WWOX和SMAD3之间的直接相互作用。使用记者分析,ChIP,共聚焦显微镜和计算机分析来确定WWOX沉默对TGFβ信号转导的影响。结果WWOX沉默影响细胞增殖,运动性,附着力以及与细胞周期,运动性和DNA损伤有关的基因的表达失调。有趣的是,我们检测到了由SMAD3转录因子激活的靶标的富集,包括ANGPTL4,FST,PTHLH和SERPINE1转录物的显着上调。重要的是,我们证明了WWOX蛋白通过WW域1与SMAD3发生物理相互作用。此外,WWOX的表达显着降低了ANGPTL4和SERPINE1启动子的SMAD3占有率,并显着抑制了TGFβ反应性报告基因的激活。此外,WWOX的表达导致SMAD3从核到细胞质区室的重新分布。由于TGFβ靶点ANGPTL4在肺转移的发展中起着关键作用,因此我们对乳腺癌微阵列数据集中相对于WWOX进行了ANGPTL4表达的荟萃分析。我们观察到WWOX和ANGPTL4之间存在显着的负相关。此外,乳腺肿瘤的WWOX lo / ANGPTL4 hi 簇富含三阴性和基底样亚型。具有这种基因表达特征的肿瘤可以代表抗TGFβ靶向疗法的候选药物。结论我们首次表明WWOX通过直接WW域介导的结合和SMAD3蛋白的潜在胞质隔离来调节乳腺细胞中的SMAD3信号传导。由于WWOX表达的丧失会随着乳腺癌的发展而增加,并且它会作为SMAD3转录活性的抑制剂,因此这些观察结果至少可以部分解释TGFβ信号在晚期乳腺癌中的自相矛盾的促肿瘤作用。

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