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Smad7 maintains epithelial phenotype of ovarian cancer stem-like cells and supports tumor colonization by mesenchymal-epithelial transition

机译:Smad7维持卵巢癌干样细胞的上皮表型,并通过间质-上皮转化支持肿瘤定植

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摘要

Epithelial ovarian carcinoma (EOC) is a lethal gynecological malignancy. Epithelial-mesenchymal transition (EMT) has an important role in the tumorigenesis and progression of EOC. During the process of EMT, the transforming growth factor- (TGF-)-Smad signaling pathway has been indicated to regulate cell motility and tumor development. Among numerous EMT-associated transcripts, Smad7 is considered to be an inhibitor, however its involvement together with TGF-1 in the progression of ovarian cancer remains to be elucidated. The present study demonstrated that Smad7 was overexpressed in SK-OV-3 and stem-like side populations of EOC cells, both of which grow in an epithelial pattern. The transformation of cells from an epithelial to a mesenchymal phenotype was stimulated by TGF-1 with a corresponding increase in Smad7 expression in SK-OV-3 cells. These results indicate that Smad7 is a regulator in the maintenance of the epithelial phenotype in EOC cells, and may serve as an inhibitory element which targets TGF--stimulated EMT. Furthermore, inhibition of Smad7 resulted in cellular mesenchymal transformation, with an increased expression of N-cadherin and a decreased expression of E-cadherin. The invasiveness and migratory capabilities of Smad7 small hairpin RNA transduced EOC cells was also reduced. The findings of the present study have identified Smad7 as a fundamental factor in the maintenance of epithelial growth of EOC cells. Reversal of EMT results in a mesenchymal-epithelial transition, which is necessary for EOC cell colonization at metastatic sites.
机译:上皮性卵巢癌(EOC)是致命的妇科恶性肿瘤。上皮-间质转化(EMT)在EOC的发生和发展中具有重要作用。在EMT的过程中,已表明转化生长因子-(TGF-)-Smad信号传导途径可调节细胞运动性和肿瘤发展。在众多与EMT相关的转录本中,Smad7被认为是抑制剂,但是尚需阐明其与TGF-1一起参与卵巢癌的进展。本研究表明,Smad7在SK-OV-3和EOC细胞的茎样侧细胞群中过表达,二者均以上皮模式生长。 TGF-1刺激了细胞从上皮向间充质表型的转化,并相应地增加了SK-OV-3细胞中Smad7的表达。这些结果表明,Smad7是维持EOC细胞上皮表型的调节剂,并且可以作为靶向TGF刺激的EMT的抑制元件。此外,Smad7的抑制导致细胞间质转化,N-钙粘蛋白的表达增加而E-钙粘蛋白的表达减少。 Smad7小发夹RNA转导的EOC细胞的侵袭性和迁移能力也降低了。本研究的发现已确定Smad7是维持EOC细胞上皮生长的基本因素。 EMT的逆转导致间质-上皮转换,这对于EOC细胞在转移部位的定植是必需的。

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