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Chemotherapy induced PRL3 expression promotes cancer growth via plasma membrane remodeling and specific alterations of caveolae-associated signaling

机译:化学疗法诱导的PRL3表达通过质膜重塑和小窝相关信号的特异性改变促进癌症生长

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The outcome of cancer therapy is greatly defined by the ability of a tumor cell to evade treatment and re-establish its bulk mass after medical interventions. Consequently, there is an urgent need for the characterization of molecules affecting tumor reoccurrence. The phosphatase of regenerating liver 3 (PRL3) protein was recently emerged among the targets that could affect such a phenomenon. The expression induction of PRL3 in melanoma cells treated with chemotherapeutic agents was assessed by western blotting. The effect of PRL3 expression on cancer growth was investigated both in vitro and in vivo. The association of PRL3 with the caveolae structures of the plasma membrane was analyzed by detergent free raft purification. The effect of PRL3 expression on the membrane organization was assayed by electron microscopy and by membrane biophysical measurements. Purification of the plasma membrane fraction and co-immunoprecipitation were used to evaluate the altered protein composition of the plasma membrane upon PRL3 expression. Here, we identified PRL3 as a genotoxic stress-induced oncogene whose expression is significantly increased by the presence of classical antitumor therapeutics. Furthermore, we successfully connected the presence of this oncogene with increased tumor growth, which implies that tumor cells can utilize PRL3 effects as a survival strategy. We further demonstrated the molecular mechanism that is connected with the pro-growth action of PRL3, which is closely associated with its localization to the caveolae-type lipid raft compartment of the plasma membrane. In our study, PRL3 was associated with distinct changes in the plasma membrane structure and in the caveolar proteome, such as the dephosphorylation of integrin β1 at Thr788/Thr789 and the increased partitioning of Rac1 to the plasma membrane. These alterations at the plasma membrane were further associated with the elevation of cyclin D1 in the nucleus. This study identifies PRL3 as an oncogene upregulated in cancer cells upon exposure to anticancer therapeutics. Furthermore, this work contributes to the existing knowledge on PRL3 function by characterizing its association with the caveolae-like domains of the plasma membrane and their resident proteins.
机译:癌症治疗的结果在很大程度上取决于肿瘤细胞逃避治疗并在医学干预后重新建立其整体质量的能力。因此,迫切需要表征影响肿瘤复发的分子。最近,在可能影响这种现象的靶标中出现了再生肝3(PRL3)蛋白的磷酸酶。通过蛋白质印迹评估PRL3在用化学治疗剂处理的黑素瘤细胞中的表达诱导。在体外和体内研究了PRL3表达对癌症生长的影响。 PRL3与质膜的小窝结构的关联通过无洗涤剂筏纯化进行了分析。 PRL3表达对膜组织的影响通过电子显微镜和膜生物物理测量来测定。质膜级分的纯化和免疫共沉淀用于评估PRL3表达后质膜蛋白组成的变化。在这里,我们确定PRL3为遗传毒性应激诱导的癌基因,其表达由于经典抗肿瘤疗法的存在而显着增加。此外,我们成功地将该致癌基因的存在与肿瘤生长的增加联系起来,这意味着肿瘤细胞可以利用PRL3效应作为生存策略。我们进一步证明了与PRL3的促生长作用有关的分子机制,它与PRL3定位于质膜的小窝型脂质筏隔室密切相关。在我们的研究中,PRL3与质膜结构和海绵体蛋白质组的明显变化有关,例如在Thr788 / Thr789上整合素β1的去磷酸化以及Rac1在质膜上的分配增加。在质膜上的这些改变还与细胞核中细胞周期蛋白D1的升高有关。这项研究确定PRL3是暴露于抗癌治疗剂后在癌细胞中上调的癌基因。此外,这项工作通过表征PRL3与质膜的小窝样结构域及其驻留蛋白之间的联系,为有关PRL3功能的现有知识做出了贡献。

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