Division of Cancer Biology, Institute of Cancer Research, London, SW3 6JB, UK.
Genomics Facility, Institute of Cancer Research, London, UK.
Oncogene. 2024 Jun;43(24):1824-1835. doi: 10.1038/s41388-024-03028-x. Epub 2024 Apr 23.
We have performed a functional in vivo mutagenesis screen to identify genes that, when altered, cooperate with a heterozygous Pten mutation to promote prostate tumour formation. Two genes, Bzw2 and Eif5a2, which have been implicated in the process of protein translation, were selected for further validation. Using prostate organoid models, we show that either Bzw2 downregulation or EIF5A2 overexpression leads to increased organoid size and in vivo prostate growth. We show that both genes impact the PI3K pathway and drive a sustained increase in phospho-AKT expression, with PTEN protein levels reduced in both models. Mechanistic studies reveal that EIF5A2 is directly implicated in PTEN protein translation. Analysis of patient datasets identified EIF5A2 amplifications in many types of human cancer, including the prostate. Human prostate cancer samples in two independent cohorts showed a correlation between increased levels of EIF5A2 and upregulation of a PI3K pathway gene signature. Consistent with this, organoids with high levels of EIF5A2 were sensitive to AKT inhibitors. Our study identified novel genes that promote prostate cancer formation through upregulation of the PI3K pathway, predicting a strategy to treat patients with genetic aberrations in these genes particularly relevant for EIF5A2 amplified tumours.
我们进行了一项功能体内诱变筛选,以鉴定那些在改变时与杂合性 Pten 突变协同促进前列腺肿瘤形成的基因。两个基因,Bzw2 和 Eif5a2,它们被认为参与了蛋白质翻译过程,被选择用于进一步验证。使用前列腺类器官模型,我们表明 Bzw2 的下调或 EIF5A2 的过表达导致类器官大小增加和体内前列腺生长。我们表明这两个基因都影响 PI3K 途径,并导致磷酸化 AKT 表达的持续增加,两种模型中的 PTEN 蛋白水平降低。机制研究表明 EIF5A2 直接参与了 PTEN 蛋白的翻译。对患者数据集的分析表明,EIF5A2 扩增存在于许多类型的人类癌症中,包括前列腺癌。两个独立队列的人类前列腺癌样本显示 EIF5A2 水平升高与 PI3K 途径基因特征的上调之间存在相关性。与此一致的是,高水平的 EIF5A2 的类器官对 AKT 抑制剂敏感。我们的研究鉴定了通过上调 PI3K 途径促进前列腺癌形成的新基因,预测了一种针对这些基因中具有遗传异常的患者的治疗策略,特别是对于 EIF5A2 扩增的肿瘤。