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首页> 外文期刊>Italian Journal of Anatomy and Embryology >Clusterin enhances migration and invasion of prostate cancer cells through an isoform-specific Akt2/miR-190/PHLPP1 circuit
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Clusterin enhances migration and invasion of prostate cancer cells through an isoform-specific Akt2/miR-190/PHLPP1 circuit

机译:Clusterin通过亚型特异性Akt2 / miR-190 / PHLPP1电路增强前列腺癌细胞的迁移和侵袭

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摘要

During prostate cancer progression cancer cells undergo a variety of molecular alterations that lead to the acquisition of uncontrolled growth properties. One such set of molecular alterations is mediated by the PI3K/Akt signaling pathway. Here, we describe a regulatory system that modulates the phosphoinosited 3-kinase/Akt (PI3K/Akt) pathway downstream of secreted Clusterin (sCLU) in normal and cancer prostate cells. The overexpression of sCLU is very frequent in prostate cancer, and can lead to Akt-activation. This prompted us to investigate how sCLU overexpression influences PI3K/Akt signaling network in a study model represented by human epithelial prostate PNT1A cells stably transfected with sCLU or with empty vector alone. We found that CLU cells show a marked differential phosphorylation of several members of the PI3K/Akt cascade, and in particular of Akt2. Moreover, we found that the phosphatase PHLPP1, known to dephosphorylate Akt2 at S473, is severely downregulated in CLU compared to MOCK cells. We thus investigated whether sCLU alters PHLPP1 protein stability or expression. Our results indicate that sCLU indeed stimulates PHLPP1 degradation by β-TrCP. Interestingly, we further demonstrated that sCLU alters also PHLPP1 through the negative regulator miR-190. Next, because sCLU has been reported to inhibit or to stimulate the aggressive behavior of cancer cells depending on the cell model, we investigated the effects of CLU overexpression or addition of recombinant Clusterin to the medium on cell migration and invasion in PNT1A cell line, which is not expected to display an invasive phenotype, and in the cancer prostate epithelial cell lines LNCaP and PC3. The result was extremely clear: not only CLU overexpression gives PNT1A cells the same behavior of wild-type PC3 cells, but also increases the migration and invasion index of all the above cell models by two to four times, compared to controls. As a confirmation, in the same model silencing of Clusterin abrogates migration of CLU cells. Next, the effect of Akt single-isoform silencing on cell migration was explored. While silencing of Akt1 affected migration only slightly, silencing of Akt2 prevented migration of both MOCK and CLU cells completely. The same result was obtained by pharmacological inhibition of Akt2. All together our results, clearly demonstrate for the first time that Clusterin can switch the low migration phenotype of normal prostate cells towards a high migration phenotype through the modulation of the expression of the PHLPP1 and, in turn, the activity of Akt2.
机译:在前列腺癌进展期间,癌细胞经历各种分子改变,导致获得不受控制的生长特性。这样的一组分子改变是由PI3K / Akt信号传导途径介导的。在这里,我们描述了一个调节系统,该系统调节正常和癌症前列腺细胞中分泌的Clusterin(sCLU)下游的磷酸肌醇3-激酶/ Akt(PI3K / Akt)途径。 sCLU的过度表达在前列腺癌中非常常见,并可能导致Akt激活。这促使我们研究在以稳定上皮sCLU或单独空载体转染的人上皮前列腺PNT1A细胞为代表的研究模型中sCLU过表达如何影响PI3K / Akt信号网络。我们发现CLU细胞显示PI3K / Akt级联,特别是Akt2的几个成员的明显差异磷酸化。此外,我们发现与MOCK细胞相比,CLU中的磷酸酶PHLPP1(在S473处使Akt2磷酸化)被严重下调。因此,我们研究了sCLU是否会改变PHLPP1蛋白的稳定性或表达。我们的结果表明,sCLU确实会刺激β-TrCP降解PHLPP1。有趣的是,我们进一步证明了sCLU还通过负调控因子miR-190改变了PHLPP1。接下来,由于已报道sCLU会根据细胞模型抑制或刺激癌细胞的侵袭行为,因此我们研究了CLU过表达或向培养基中添加重组Clusterin对PNT1A细胞系中细胞迁移和侵袭的影响。预期不会在癌性前列腺上皮细胞系LNCaP和PC3中显示侵袭性表型。结果非常清楚:与对照相比,不仅CLU过表达使PNT1A细胞具有与野生型PC3细胞相同的行为,而且所有上述细胞模型的迁移和侵袭指数提高了2-4倍。作为确认,在同一模型中,Clusterin沉默消除了CLU细胞的迁移。接下来,探讨了Akt单同种型沉默对细胞迁移的影响。虽然Akt1沉默仅轻微影响迁移,但Akt2沉默完全阻止了MOCK和CLU细胞的迁移。通过药理抑制Akt2获得了相同的结果。所有这些结果共同清楚地证明,Clusterin可以通过调节PHLPP1的表达以及进而调节Akt2的活性,将正常前列腺细胞的低迁移表型转变为高迁移表型。

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