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Suppression of MAGE-A10 alters the metastatic phenotype of tongue squamous cell carcinoma cells

机译:MAGE-A10的抑制改变舌鳞状细胞癌细胞的转移表型

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MAGE-A10 is a member of the MAGE protein family (melanoma associated antigen) which is overexpressed in cancer cells. Although MAGE-A10 has been characterized for some time and is generally associated to metastasis its function remains unknown. Here we describe experiments using as models oral squamous cell carcinoma (OSCC) cell lines displaying increasing metastatic potential (LN1 and LN2). These cell lines were transduced with lentivirus particles coding for short hairpin against MAGE-A10 mRNA. Repression of MAGE-A10 expression in LN2 cells altered their morphology and impaired growth of LN1 and LN2 cell lines. Furthermore, repression of MAGE-A10 expression increased cell-cell and cell matrix adhesion. Furthermore shMAGEA10 cells were shown to assemble aberrantly on a 3D culture system (microspheroids) when compared to cells transduced with the control scrambled construct. Cell migration was inhibited in knocked down cells as revealed by two different migration assays, wound healing and a phagokinetic track motility assay. In vitro invasion assay using a leiomyoma tissue derived matrix (myogel) showed that shMAGEA10 LN1 and shMAGEA10 LN2 cells displayed a significantly diminished ability to penetrate the matrices. Concomitantly, the expression of E-cadherin, N-cadherin and vimentin genes was analyzed. shMAGEA10 activated the expression of E-cadherin and repression N-cadherin and vimentin transcription. Taken together the results indicate that MAGE-A10 exerts its effects at the level of the epithelial-mesenchymal transition (EMT) presumably by regulating the expression of adhesion molecules.
机译:MAGE-A10是在癌细胞中过度表达的MAGE蛋白家族(与黑色素瘤相关的抗原)的成员。尽管MAGE-A10已经鉴定了一段时间,并且通常与转移有关,但其功能仍然未知。在这里,我们描述使用口腔鳞状细胞癌(OSCC)细胞系作为模型来显示转移潜力(LN1和LN2)增加的实验。用编码针对MAGE-A10 mRNA的短发夹的慢病毒颗粒转导这些细胞系。抑制LN2细胞中MAGE-A10表达会改变其形态,并损害LN1和LN2细胞系的生长。此外,MAGE-A10表达的抑制增加了细胞与细胞和细胞基质的粘附。此外,与对照加扰构建物转导的细胞相比,shMAGEA10细胞显示在3D培养系统(微球体)上异常组装。如通过两种不同的迁移测定,伤口愈合和吞噬动力学追踪运动测定所揭示的,在被击倒的细胞中细胞迁移受到抑制。使用平滑肌瘤组织衍生的基质(myogel)进行的体外侵袭测定显示,shMAGEA10 LN1和shMAGEA10 LN2细胞显示出显着降低的渗透基质能力。同时分析了E-cadherin,N-cadherin和波形蛋白的表达。 shMAGEA10激活E-钙黏着蛋白的表达并抑制N-钙黏着蛋白和波形蛋白的转录。总之,结果表明,MAGE-A10可能通过调节粘附分子的表达而在上皮-间质转化(EMT)的水平上发挥其作用。

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