首页> 外文期刊>Journal of cellular biochemistry. >Forkhead-box R2 promotes metastasis and growth by stimulating angiogenesis and activating hedgehog signaling pathway in ovarian cancer
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Forkhead-box R2 promotes metastasis and growth by stimulating angiogenesis and activating hedgehog signaling pathway in ovarian cancer

机译:通过刺激血管生成和激活卵巢癌的刺猬信号通路来促进转移和生长

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摘要

Overexpression of forkhead-box R2 (FoxR2) is related to metastasis and progression of tumor. However, its biological functions in ovarian cancer (OC) progression remain unclear. Herein, we aimed to explore the changes in biological functions and molecular events related to FoxR2 overexpression. We found that FoxR2 is upregulated frequently in OC where these events are associated with worse histologic grade and poor survival. Enhanced expression of FoxR2 was related to cell growth, migration, and epithelial-mesenchymal transition, whereas silencing of FoxR2 suppressed these malignant phenotypes. In addition, angiogenesis was stimulated by FoxR2 overexpression by enhancing vascular endothelial growth factor expression. Further mechanistic investigations revealed that the increase in cell surface FoxR2 promoted sonic hedgehog binding and signaling. Inhibiting hedgehog pathway with sonidegib decreased FoxR2-induced migration and lung metastasis of OC cells, establishing the critical role of hedgehog signaling in mediating the effects of FoxR2 expression. Taken together, our results indicate that FoxR2 overexpression in OC contributes to malignant behavior in cancer cells, at least in part through stimulating angiogenesis and activation of the hedgehog signaling pathway. Hedgehog signaling pathway activation may be the key in tumor progression mediated by FoxR2.
机译:FORKHEAD盒R2(FOXR2)的过度表达与肿瘤转移和进展有关。然而,其在卵巢癌(OC)进展中的生物学功能仍不清楚。在此,我们旨在探讨与FoxR2过表达相关的生物学功能和分子事件的变化。我们发现FoxR2经常在oc中上调,其中这些事件与更差的组织学等学程度和存活率不佳。增强FoxR2的表达与细胞生长,迁移和上皮 - 间充质转换有关,而FoxR2的沉默抑制了这些恶性表型。此外,通过增强血管内皮生长因子表达,通过FOXR2过表达刺激血管生成。进一步的机械研究表明,细胞表面FoxR2的增加促进了Sonic Hedgehog结合和信号传导。抑制SONIDEGIB的刺猬途径降低了癌症诱导的OC细胞的迁移和肺转移,建立了刺猬信号传导在介导FOXR2表达的作用中的关键作用。我们的结果表明,OC中的FoxR2过表达至少有助于癌细胞的恶性行为,至少部分通过刺激血管生成和激活刺猬信号通路。刺猬信号通路激活可以是FoxR2介导的肿瘤进展的关键。

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