Institute of Cancer Sciences, College of Medical, Veterinary and Life Sciences, University of Glasgow, Bearsden, Glasgow, G61 1QH, UK.
CRUK Beatson Institute, Bearsden, Glasgow, G61 1BD, UK.
Oncogene. 2020 Feb;39(8):1797-1806. doi: 10.1038/s41388-019-1106-x. Epub 2019 Nov 18.
BRF1 is a rate-limiting factor for RNA Polymerase III-mediated transcription and is elevated in numerous cancers. Here, we report that elevated levels of BRF1 associate with poor prognosis in human prostate cancer. In vitro studies in human prostate cancer cell lines demonstrated that transient overexpression of BRF1 increased cell proliferation whereas the transient downregulation of BRF1 reduced proliferation and mediated cell cycle arrest. Consistent with our clinical observations, BRF1 overexpression in a Pten-deficient mouse (Pten BRF1) prostate cancer model accelerated prostate carcinogenesis and shortened survival. In Pten BRF1 tumours, immune and inflammatory processes were altered, with reduced tumoral infiltration of neutrophils and CD4 positive T cells, which can be explained by decreased levels of complement factor D (CFD) and C7 components of the complement cascade, an innate immune pathway that influences the adaptive immune response. We tested if the secretome was involved in BRF1-driven tumorigenesis. Unbiased proteomic analysis on BRF1-overexpresing PC3 cells confirmed reduced levels of CFD in the secretome, implicating the complement system in prostate carcinogenesis. We further identify that expression of C7 significantly correlates with expression of CD4 and has the potential to alter clinical outcome in human prostate cancer, where low levels of C7 associate with poorer prognosis.
BRF1 是 RNA 聚合酶 III 介导的转录的限速因子,在许多癌症中升高。在这里,我们报告 BRF1 水平升高与人类前列腺癌的预后不良相关。在人类前列腺癌细胞系中的体外研究表明,BRF1 的瞬时过表达增加了细胞增殖,而 BRF1 的瞬时下调则降低了增殖并介导了细胞周期停滞。与我们的临床观察一致,在 Pten 缺陷型小鼠(Pten BRF1)前列腺癌模型中过表达 BRF1 加速了前列腺癌的发生并缩短了生存时间。在 Pten BRF1 肿瘤中,免疫和炎症过程发生改变,中性粒细胞和 CD4 阳性 T 细胞在肿瘤中的浸润减少,这可以通过补体因子 D(CFD)和补体级联的 C7 成分的水平降低来解释,这是一种影响适应性免疫反应的先天免疫途径。我们测试了是否有分泌组参与了 BRF1 驱动的肿瘤发生。对 BRF1 过表达的 PC3 细胞进行的无偏见蛋白质组学分析证实,分泌组中 CFD 的水平降低,表明补体系统参与了前列腺癌的发生。我们进一步确定 C7 的表达与 CD4 的表达显著相关,并有潜力改变人类前列腺癌的临床结局,其中 C7 的低水平与预后不良相关。