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首页> 外文期刊>Clinical and Experimental Metastasis >BMP signalling controls the malignant potential of ascites-derived human epithelial ovarian cancer spheroids via AKT kinase activation
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BMP signalling controls the malignant potential of ascites-derived human epithelial ovarian cancer spheroids via AKT kinase activation

机译:BMP信号通过AKT激酶激活控制腹水来源的人上皮性卵巢癌球体的恶性潜能

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Epithelial ovarian cancer (EOC) cells have the ability to form multi-cellular aggregates in malignant ascites which dramatically alters cell signalling, survival, and metastatic potential. Herein, we demonstrate that patient ascites-derived EOC cells down-regulate endogenous bone morphogenetic protein (BMP) signalling by decreasing BMP ligand expression when grown in suspension culture to form spheroids. Enforced BMP signalling in these cells via constitutively-active BMP type I ALK3QD receptor expression causes the formation of smaller, more loosely-aggregated spheroids. Additionally, ALK3QD-expressing spheroids have an increased rate of adhesion and dispersion upon reattachment to substratum. Inhibition of endogenous BMP signalling using recombinant Noggin or small molecule inhibitor LDN-193189, on the other hand, opposed these phenotypic changes. To identify potential targets that impact the phenotype of EOC spheroids due to activated BMP signalling, we performed genome-wide expression analyses using Affymetrix arrays. Using the online Connectivity Map resource, the BMP signalling gene expression signature revealed that the AKT pathway is induced by activated BMP signalling in EOC cells; this finding was further validated by phospho-AKT immuno-blotting. In fact, treatment of EOC spheroids with an AKT inhibitor, Akti-1/2, reduced BMP-stimulated cell dispersion during reattachment as compared to controls. Thus, we have identified AKT as being one important downstream component of activated BMP signalling on EOC spheroid pathobiology, which may have important implications on the metastatic potential of this malignancy.
机译:上皮性卵巢癌(EOC)细胞具有在恶性腹水中形成多细胞聚集体的能力,从而极大地改变了细胞的信号传导,存活和转移潜能。在本文中,我们证明了患者腹水来源的EOC细胞在悬浮培养中生长形成球状体时,通过降低BMP配体的表达来下调内源性骨形态发生蛋白(BMP)信号。通过组成型活性BMP I型ALK3 QD 受体表达在这些细胞中施加BMP信号导致形成更小,更松散聚集的球体。此外,表达ALK3 QD 的球体在重新附着到基质上时具有增加的粘附和分散速率。另一方面,使用重组Noggin或小分子抑制剂LDN-193189抑制内源性BMP信号转导与这些表型改变相反。为了确定由于激活的BMP信号而影响EOC球体表型的潜在靶标,我们使用Affymetrix阵列进行了全基因组表达分析。利用在线连接图资​​源,BMP信号基因的表达特征表明,AKT途径是由EOC细胞中激活的BMP信号诱导的。磷酸化AKT免疫印迹进一步证实了这一发现。实际上,与对照组相比,用AKT抑制剂Akti-1 / 2处理EOC球体在重新附着期间减少了BMP刺激的细胞分散。因此,我们已经确定AKT是EOC球状病理生物学激活BMP信号传导的重要下游成分,这可能对该恶性肿瘤的转移潜力具有重要意义。

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