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ErbB-2 signaling plays a critical role in regulating androgen-sensitive and castration-resistant androgen receptor-positive prostate cancer cells

机译:ErbB-2信号在调节雄激素敏感性和去势抵抗性雄激素受体阳性前列腺癌细胞中起关键作用

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摘要

While androgen deprivation therapy (ADT) reduces tumor burden, autocrine growth factor loops such as human epidermal growth factor receptor 2 (HER2/ErbB-2eu) have been proposed to contribute to prostate cancer (PCa) survival and relapse. However, the role of ErbB-2 in regulating androgen-sensitive (AS) and castration-resistant (CR) cell proliferation remains unclear. Here, we determined the role of ErbB-2 in PCa progression and survival under steroid-reduced conditions using two independent PCa cell progression models. In AR-positive androgen-independent (AI) PCa cells that exhibit the CR phenotype, ErbB-2 was constitutively activated, compared to corresponding AS PCa cells. In AS LNCaP C-33 cells, androgen-induced ErbB-2 activation through ERK1/2 mediates PCa cell proliferation. Further, the ErbB-2-specific but not EGFR-specific inhibitor suppresses basal and androgen-stimulated cell proliferation and also blocks ERK1/2 activation. ErbB-2 ectopic expression and cPAcP siRNA transfection of LNCaP C-33 cells each increases ErbB-2 tyrosine phosphorylation, correlating with increased AI PSA secretion and cell proliferation. Conversely, trapping ErbB-2 by transfected endoplasmic reticulum-targeting ScFv5R expression vector abolished DHT-induced LNCaP C-33 cell growth. Moreover, inhibition of ErbB-2 but not EGFR in AI LNCaP C-81 and MDA PCa2b-AI PCa cells significantly abolished AI cell growth. In contrast to androgens via ErbB-2/ERK1/2 signaling in AS PCa cells, the inhibition of ErbB-2 abrogated AI cell proliferation by inhibiting the cell survival protein Akt in those AI cells. These results suggest that ErbB-2 is a prominent player in mediating the ligand-dependent and -independent activation of AR in AS and AI/CR PCa cells respectively for PCa progression and survival.
机译:虽然雄激素剥夺疗法(ADT)减轻了肿瘤负担,但已提出自分泌生长因子环(例如人表皮生长因子受体2(HER2 / ErbB-2 / neu))有助于前列腺癌(PCa)的生存和复发。但是,ErbB-2在调节雄激素敏感(AS)和去势抵抗(CR)细胞增殖中的作用仍不清楚。在这里,我们使用两个独立的PCa细胞进展模型确定了ErbB-2在PCa进展和在类固醇减少的条件下存活的作用。与相应的AS PCa细胞相比,在具有CR表型的AR阳性雄激素非依赖性(AI)PCa细胞中,ErbB-2被组成性激活。在AS LNCaP C-33细胞中,雄激素诱导的ErbB-2激活通过ERK1 / 2介导PCa细胞增殖。此外,ErbB-2特异性但不是EGFR特异性抑制剂可抑制基础和雄激素刺激的细胞增殖,也可阻断ERK1 / 2激活。 LNCaP C-33细胞的ErbB-2异位表达和cPAcP siRNA转染均增加ErbB-2酪氨酸磷酸化,与AI PSA分泌增加和细胞增殖相关。相反,通过转染靶向内质网的ScFv5R表达载体捕获ErbB-2消除了DHT诱导的LNCaP C-33细胞生长。而且,在AI LNCaP C-81和MDA PCa2b-AI PCa细胞中抑制ErbB-2而不抑制EGFR显着消除了AI细胞的生长。与AS PCa细胞中通过ErbB-2 / ERK1 / 2信号传导的雄激素相反,对ErbB-2的抑制通过抑制AI细胞中的细胞存活蛋白Akt消除了AI细胞的增殖。这些结果表明,ErbB-2在介导AS和AI / CR PCa细胞中AR的配体依赖性和非依赖性活化方面,对于PCa的进展和存活起着重要作用。

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