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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Regulation of TM4SF5-mediated tumorigenesis through induction of cell detachment and death by tiarellic acid.
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Regulation of TM4SF5-mediated tumorigenesis through induction of cell detachment and death by tiarellic acid.

机译:通过噻咯酸诱导细胞脱离和死亡来调节TM4SF5介导的肿瘤发生。

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摘要

mRNA for four-transmembrane L6 family member 5 (TM4SF5), a homolog of tumor antigen L6, was previously shown to be highly expressed in diverse tumors. We recently found that human hepatocarcinoma tissues also overexpressed TM4SF5 protein, in comparison to normal liver tissues. We also found that tiarellic acid (TA) caused cell detachment-related apoptosis in cells expressing endogenous or stably-overexpressing TM4SF5. When cells expressing TM4SF5 were treated with TA, we observed reduced phosphorylation of focal adhesion kinase, paxillin, and p130Cas, but not c-Src. TA treatment also caused focal adhesion loss and reduced cell adhesion, and increased the numbers of floating cells and apoptotic cells. These effects were blocked by overexpression of focal adhesion molecules, suggesting that treatment with TA mediates anoikis of TM4SF5-expressing cells. However, TM4SF5-null cells were not affected by TA, indicating that these effects occur specifically in TM4SF5-positive cells. TA administration reduced tumor formation in nude mice injected with TM4SF5-expressing cells, presumably through increased apoptosis in TM4SF5-positive tumors. These observations indicate that TM4SF5-positive tumorigenesis can be inhibited by TA via induction of cell detachment-related apoptosis, and suggest that TA may be developed as a putative therapeutic reagent against TM4SF5-positive tumorigenesis.
机译:四跨膜L6家族成员5(TM4SF5)的mRNA是肿瘤抗原L6的同源物,先前已显示在多种肿瘤中高表达。我们最近发现,与正常肝组织相比,人肝癌组织也过表达TM4SF5蛋白。我们还发现,在表达内源性或稳定过量表达TM4SF5的细胞中,噻咯酸(TA)引起细胞脱离相关的凋亡。当用TA处理表达TM4SF5的细胞时,我们观察到粘着斑激酶,paxillin和p130Cas的磷酸化降低,但c-Src却没有。 TA治疗还引起粘着斑损失并减少细胞粘附,并增加了漂浮细胞和凋亡细胞的数量。这些作用被粘着斑分子的过表达所阻断,表明用TA进行治疗可介导表达TM4SF5的细胞的失神经。但是,TM4SF5无效细胞不受TA的影响,表明这些效应特别发生在TM4SF5阳性细胞中。 TA给药可减少注射了TM4SF5表达细胞的裸鼠的肿瘤形成,大概是通过增加TM4SF5阳性肿瘤的凋亡。这些观察结果表明,通过诱导细胞脱离相关的凋亡,TA可以抑制TM4SF5阳性的肿瘤发生,并且表明TA可以被开发为针对TM4SF5阳性的肿瘤发生的假定治疗剂。

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