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Folliculin Interacts with Rab35 to Regulate EGF-Induced EGFR Degradation

机译:卵泡蛋白与Rab35相互作用以调节EGF诱导的EGFR降解

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Aims and Hypothesis: This study aims to investigate the mechanism involved in intracellular regulation of EGFR degradation induced by EGF. Methods: Phosphorylation of proteins related to EGFR signaling was examined by western blot analysis. Activation, connection between Rab35 and folliculin (FLCN) were assessed by pulldown, coimmunoprecipitation assays separately. The relationship between FLCN and cell growth was detected using gene overexpression and knock-down techniques. Results: Here, we demonstrate that interfering with FLCN, a tumor suppressor, reduces the rate of EGF-induced EGFR degradation, resulting in prolonged activation of downstream signaling. Rab35 is also involved in these processes. Moreover, C-terminal of FLCN binds to and activates Rab35. Of special interest is the observation that erlotinib, a selective EGFR inhibitor, not only obstructs the EGFR-mediated cellular signaling, but also abolishes EGF-stimulated EGFR degradation. Further results reveal that EGF facilitates the activation of Rab35, and FLCN modulates EGF-dependent Rab35 activation and cell growth. Conclusions: Taken together, our study proposes a negative-feedback regulation model in which FLCN mediates EGF-induced Rab35 activation, thereby increasing EGFR degradation and attenuating EGFR signaling.
机译:目的和假设:本研究旨在探讨参与EGF诱导的EGFR降解的细胞内调节的机制。方法:通过蛋白质印迹分析检测与EGFR信号相关的蛋白质的磷酸化。 Rab35和卵泡蛋白(FLCN)之间的激活,连接分别通过下拉免疫共沉淀法进行评估。使用基因过表达和敲除技术检测了FLCN与细胞生长之间的关系。结果:在这里,我们证明干扰肿瘤抑制因子FLCN会降低EGF诱导的EGFR降解的速率,从而延长下游信号的激活。 Rab35也参与这些过程。而且,FLCN的C末端结合并激活Rab35。特别有趣的是观察到,选择性的EGFR抑制剂埃洛替尼不仅阻碍EGFR介导的细胞信号传导,而且消除了EGF刺激的EGFR降解。进一步的结果表明,EGF促进Rab35的激活,而FLCN调节依赖于EGF的Rab35的激活和细胞生长。结论:总之,我们的研究提出了一种负反馈调节模型,其中FLCN介导EGF诱导的Rab35活化,从而增加EGFR降解并减弱EGFR信号传导。

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