骨转移性前列腺癌与酪氨酸激酶抑制剂耐药:miR-203缺失与EGFR信号上调之间的密切关系

W. Abou-Kheir, T. Mouhieddine, Muhieddine M. Itani, Yen-Nien Liu
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引用次数: 1

摘要

我们小组最近描述了miR-203在ras依赖性前列腺癌转移中的抑瘤作用。我们已经探索了通过EGFR信号调控miR-203的调控机制。我们研究了转移的分子机制,并发现了活化Ras下游与miR-203相互作用的基因的新作用。我们发现了miR-203与EGFR配体AREG、EREG和TGFA 3'UTR直接相互作用的放大调控环。通过临床标本和数据库分析,我们的数据表明miR-203的降低和EGFR配体、AREG、EREG和TGFA表达的增加与前列腺癌的进展相关。由于酪氨酸激酶抑制剂(TKIs)已被证明以剂量依赖的方式抑制EGFR的酪氨酸磷酸化,我们研究了miR-203在ras激活的前列腺癌中TKIs诱导的细胞凋亡中的作用。我们研究了miR-203过表达促进tkis耐药ras激活前列腺癌细胞凋亡的机制。我们已经发现了候选miR-203靶点的适应症,这些靶点要么受到抗凋亡蛋白(例如API5、BIRC2和TRIAP1)的影响,要么受到NF-κ b诱导的新型致癌分子TNFAIP8的积极影响。这些观察结果表明,后一类细胞可能受到miR-203耗竭和抗凋亡蛋白过表达调控回路的协同影响。我们的研究结果提供了证据,表明miR-203在前列腺癌进展过程中调节EGFR信号基因的表达,以响应tkis耐药性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bone metastatic prostate cancer and resistance to tyrosine kinase inhibitors: an intimate relationship between loss of miR-203 and up-regulation of EGFR signaling
A tumor suppressor role for miR-203 in RAS-dependent prostate cancer metastasis has been described recently by our group.  We have explored the regulatory mechanisms by which miR-203 is being regulated through EGFR signaling. We investigated the molecular mechanism of metastasis and identified novel roles of genes that interact with miR-203 downstream of activated Ras. We showed an amplifying regulatory loop involving the direct interaction of miR-203 with the EGFR ligands, AREG, EREG, and TGFA 3’UTR. Using clinical specimens and database analysis, our data suggested that decreasing miR-203 and increasing EGFR ligands, AREG, EREG, and TGFA expressions are correlated with prostate cancer progression. Since tyrosine kinase inhibitors (TKIs) have been shown to inhibit tyrosine phosphorylation of EGFR in a dose-dependent manner, we examined a role for miR-203 in TKIs-induced apoptosis in RAS-activated prostate cancer. We investigated the mechanisms by which miR-203 overexpression contributes to TKIs-resistant RAS-activated prostate cancer cells apoptosis. We have shown indications for candidate miR-203 targets that are either influenced by anti-apoptotic proteins (e.g. API5, BIRC2, and TRIAP1) or positively influenced by a novel NF-κB-inducible oncogenic molecule, TNFAIP8. These observations suggest that the latter category may be synergistically affected by the regulatory loop of miR-203 depletion and anti-apoptotic proteins overexpression. Our results provided evidence showing a role of miR-203 in regulating the expression of EGFR signaling genes in response to TKIs-resistance during prostate cancer progression.
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