Kwon Oh-Joon, Zhang Li, Wang Jianghua, Su Qingtai, Feng Qin, Zhang Xiang H F, Mani Sendurai A, Paulter Robia, Creighton Chad J, Ittmann Michael M, Xin Li
J Clin Invest. 2016 Jul 1;126(7):2626-41. doi: 10.1172/JCI84637. Epub 2016 Jun 13.
Although Notch signaling is deregulated in prostate cancer, the role of this pathway in disease development and progression is not fully understood. Here, we analyzed 2 human prostate cancer data sets and found that higher Notch signaling correlates with increased metastatic potential and worse disease survival rates. We used the Pten-null mouse prostate cancer model to investigate the function of Notch signaling in the initiation and progression of prostate cancer. Disruption of the transcription factor RBPJ in Pten-null mice revealed that endogenous canonical Notch signaling is not required for disease initiation and progression. However, augmentation of Notch activity in this model promoted both proliferation and apoptosis of prostate epithelial cells, which collectively reduced the primary tumor burden. The increase in cellular apoptosis was linked to DNA damage-induced p53 activation. Despite a reduced primary tumor burden, Notch activation in Pten-null mice promoted epithelial-mesenchymal transition and FOXC2-dependent tumor metastases but did not confer resistance to androgen deprivation. Notch activation also resulted in transformation of seminal vesicle epithelial cells in Pten-null mice. Our study highlights a multifaceted role for Notch signaling in distinct aspects of prostate cancer biology and supports Notch as a potential therapeutic target for metastatic prostate cancer.
尽管Notch信号通路在前列腺癌中失调,但其在疾病发生和进展中的作用尚未完全明确。在此,我们分析了2个人类前列腺癌数据集,发现Notch信号通路活性增强与转移潜能增加及疾病生存率降低相关。我们使用Pten基因缺失的小鼠前列腺癌模型来研究Notch信号通路在前列腺癌发生和进展中的作用。在Pten基因缺失的小鼠中破坏转录因子RBPJ表明,内源性经典Notch信号通路并非疾病发生和进展所必需。然而,在该模型中增强Notch活性可促进前列腺上皮细胞的增殖和凋亡,从而共同减轻原发性肿瘤负荷。细胞凋亡增加与DNA损伤诱导的p53激活有关。尽管原发性肿瘤负荷减轻,但Pten基因缺失的小鼠中Notch激活促进上皮-间质转化和FOXC2依赖的肿瘤转移,但并未赋予对雄激素剥夺的抗性。Notch激活还导致Pten基因缺失的小鼠精囊上皮细胞发生转化。我们的研究突出了Notch信号通路在前列腺癌生物学不同方面的多面作用,并支持将Notch作为转移性前列腺癌的潜在治疗靶点。