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Caveolin-I regulates VEGF-stimulated angiogenic activities in prostate cancer and endothelial cells

机译:Caveolin-I调节前列腺癌和内皮细胞中VEGF刺激的血管生成活性

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Caveolin-1 (cav-1) is a multifunctional protein and major component of caveolae membranes serving important functions related to signal transduction, endocytosis, transcytosis, and molecular transport. We previously showed that cav-l is overexpressed and secreted by metastatic prostate cancer cells. We now report that cav-1 gene transduction (Adcav-1) or recombinant cav-1 (rcav-1) protein treatment of cav-1 -negative prostate cancer cell line LP-LNCaP or cav-/~(-/-) endothelial cells potentiated VEGF-stimulated angiogenic signaling. Downregulation of cav-1 in prostate cancer cell line PC-3 or human umbilical vein endothelial cells (HUVECs) through cav-1 siRNA significantly reduced basal and VEGF-stimulated phosphorylation of VEGFR2 (Y95I), PLCyl (Y783) and/or Akt (S473 & T308) relative to those in control siRNA treated cells. Additionally rcav-1 stimulation of cav-1 siRNA treated HUVECs restored this signaling pathway. Confocal microscopy and immunoprecipitation analysis revealed association and colocalization of VEGFR2 and PLCyl with cav-1 following VEGF stimulation in HUVECs. Interestingly, treatment of HUVECs with cav-1 scaffolding domain (CSD) caused significant reduction in the VEGF-stimulated phosphorylation of VEGFR2, PLCyl and Akt suggesting that CSD inhibits cav-1-mediated angiogenic signaling. VEGF stimulation of HUVECs significantly increased tubule length and cell migration, but this stimulatory effect was significantly reduced by cav-1 siRNA and/or CSD treatment. The present study demonstrates that cav-1 regulates VEGF-stimulated VEGFR2 autophosphorylation and activation of downstream angiogenic signaling, possibly through compartmentalization of specific signaling molecules. Our results provide mechanistic insight into the role of cav-1 in prostate cancer and suggest the use of CSD as a therapeutic tool to suppress angiogenic signaling in prostate cancer.
机译:Caveolin-1(cav-1)是一种多功能蛋白,是海绵膜的主要成分,具有与信号转导,内吞,胞吞和分子运输有关的重要功能。我们先前显示,cav-1被转移性前列腺癌细胞过度表达和分泌。现在我们报告cav-1基因转导(Adcav-1)或重组cav-1(rcav-1)蛋白治疗cav-1阴性前列腺癌细胞系LP-LNCaP或cav- /〜(-/-)内皮细胞细胞增强了VEGF刺激的血管生成信号。通过cav-1 siRNA下调前列腺癌细胞PC-3或人脐静脉内皮细胞(HUVEC)中cav-1的表达显着降低了基础和VEGF刺激的VEGFR2(Y95I),PLCyl(Y783)和/或Akt( S473和T308)。另外,cav-1 siRNA处理的HUVEC的rcav-1刺激还恢复了该信号通路。共聚焦显微镜和免疫沉淀分析显示,在HUVECs中,VEGF刺激后VEGFR2和PLCyl与cav-1的缔合和共定位。有趣的是,用cav-1支架结构域(CSD)处理HUVEC引起VEGF刺激的VEGFR2,PLCyl和Akt磷酸化的显着降低,表明CSD抑制了cav-1介导的血管生成信号。 VEGF刺激HUVEC显着增加了肾小管长度和细胞迁移,但是cav-1 siRNA和/或CSD处理显着降低了这种刺激作用。本研究表明,cav-1可能通过特定信号分子的区分开来调节VEGF刺激的VEGFR2自磷酸化和下游血管生成信号的激活。我们的结果提供了对cav-1在前列腺癌中作用的机制的见解,并建议使用CSD作为抑制前列腺癌中血管生成信号的治疗工具。

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