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Reduced FRG1 expression promotes angiogenesis via activation of the FGF2-mediated ERK/AKT pathway

机译:FRG1 表达降低通过激活 FGF2 介导的 ERK/AKT 通路促进血管生成

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摘要

Identifying novel targets that control both tumorigenesis and angiogenesis can aid in developing a more potent anti-angiogenic therapeutic strategy. We previously reported that reduction of FRG1 is associated with increased p38-MAPK signaling in prostate cancer and with elevated MEK-ERK signaling in breast cancer. Here, we reveal the role of FRG1 in tumor angiogenesis. Our findings demonstrate that depleted FRG1 levels enhance the proliferation, migration, and tubule formation of HUVECs in a paracrine manner, and this was further substantiated in multiple animal models. Mechanistically, FRG1 depletion activated the expression of FGF2 in breast cancer cells, which triggered the ERK/AKT cascade in endothelial cells. As FRG1 affects multiple tumorigenic properties and it is upstream of FGF2, it can be explored as a therapeutic target that is less prone to resistance.
机译:确定控制肿瘤发生和血管生成的新靶点有助于开发更有效的抗血管生成治疗策略。我们之前报道过,FRG1 的减少与前列腺癌中 p38-MAPK 信号传导的增加和乳腺癌中 MEK-ERK 信号的升高有关。在这里,我们揭示了FRG1在肿瘤血管生成中的作用。我们的研究结果表明,耗尽的 FRG1 水平以旁分泌方式增强了 HUVEC 的增殖、迁移和肾小管形成,这在多个动物模型中得到了进一步证实。从机制上讲,FRG1 耗竭激活了乳腺癌细胞中 FGF2 的表达,从而触发了内皮细胞中的 ERK/AKT 级联反应。由于 FRG1 影响多种致瘤特性,并且它位于 FGF2 的上游,因此可以将其作为不易产生耐药性的治疗靶点进行探索。

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