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Crosstalk between PI3K and Ras pathways via protein phosphatase 2A in human ovarian clear cell carcinoma

机译:人卵巢透明细胞癌中PI3K和Ras途径通过蛋白磷酸酶2A的串扰

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Hypoxia-inducible factor-1 (HIF-1) is one of the most promising pharmacological targets for all types of cancer, including ovarian cancer. Ovarian clear cell carcinoma (OCCC) has poor prognosis because of its insensitivity to chemotherapy. To elucidate the characteristics of this troublesome cancer, we examined HIF-1 expression under normoxia or hypoxia in various ovarian cancer cell lines. HIF-1 was highly expressed under normoxia only in RMG-1, an OCCC cell line. To examine whether HIF-1 is involved in the tumorigenesis of RMG-1 cells, we established HIF-1-silenced cells, RMG-1HKD. The proliferation rate of RMG-1HKD cells was faster than that of RMG-1 cells. Furthermore, the activity of MEK/ERK in the Ras pathway increased in RMG-1HKD cells, whereas that of mTOR in the PI3K pathway did not change. Activation of the Ras pathway was attributable to the increase in phosphorylated MEK via PP2A inactivation. To confirm the crosstalk between the PI3K and Ras pathways in vivo, RMG-1 or RMG-1HKD cells were transplanted into the skin of nude mice with rapamycin (an inhibitor of mTOR), PD98059 (an inhibitor of MEK), or both. RMG-1HKD cells showed higher sensitivity to PD98059 than that observed in RMD-1 cells, whereas the combination therapy resulted in synergistic inhibition of both cells. These findings suggest that inhibition of HIF-1, a downstream target of mTOR in the PI3K pathway, activates the Ras pathway on account of the increase in MEK phosphorylation via PP2A inactivation, and the crosstalk between the 2 pathways could be applied in the combination therapy for HIF-1-overexpressing cancers such as OCCC.
机译:缺氧诱导因子1(HIF-1)是所有类型癌症(包括卵巢癌)中最有希望的药理学靶标之一。卵巢透明细胞癌(OCCC)由于对化疗不敏感,因此预后较差。为了阐明这种麻烦的癌症的特征,我们检查了正常卵巢或缺氧条件下各种卵巢癌细胞系中HIF-1的表达。 HIF-1仅在常氧下在OCCC细胞系RMG-1中高表达。为了检查HIF-1是否参与RMG-1细胞的肿瘤发生,我们建立了HIF-1沉默的细胞RMG-1HKD。 RMG-1HKD细胞的增殖速率比RMG-1细胞快。此外,在RMG-1HKD细胞中,Ras途径中的MEK / ERK活性增加,而PI3K途径中的mTOR活性不变。 Ras途径的激活可归因于PP2A失活引起的磷酸化MEK的增加。为了证实体内PI3K和Ras途径之间的串扰,将RMG-1或RMG-1HKD细胞与雷帕霉素(mTOR的抑制剂),PD98059(MEK的抑制剂)或两者一起移植入裸鼠皮肤。 RMG-1HKD细胞对PD98059的敏感性高于RMD-1细胞,而联合治疗导致两种细胞的协同抑制作用。这些发现表明,PI3K途径中mTOR下游目标HIF-1的抑制由于PP2A失活引起的MEK磷酸化增加而激活了Ras途径,这两种途径之间的串扰可用于联合治疗用于过度表达HIF-1的癌症,例如OCCC。

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