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FDPS cooperates with PTEN loss to promote prostate cancer progression through modulation of small GTPases/AKT axis

机译:FDPS与PTEN缺失合作通过调节小GTPases / AKT轴促进前列腺癌的进展

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摘要

Farnesyl Diphosphate Synthase (FDPS), a mevalonate pathway enzyme, is highly expressed in several cancers, including prostate cancer (PCa). To date, the mechanistic, functional and clinical significance of FDPS in cancer remains unexplored. We evaluated the FDPS expression and its cancer-associated phenotypes using in vitro and in vivo methods in PTEN deficient and sufficient human and mouse PCa cells and tumors. Interestingly, FDPS overexpression synergizes with PTEN deficiency in PTEN conditionally knockout mice (P<0.05) and expressed significantly higher in human (P<0.001) PCa tissues, cell lines and murine tumoroids compared to respective controls. In silico analysis revealed that FDPS is associated with increasing Gleason score, PTEN functionally deficient status and poor survival of PCa. Ectopic overexpression of FDPS promotes oncogenic phenotypes such as colony formation (P<0.01) and proliferation (P<0.01) through activation of AKT and ERK signaling by prenylating Rho A, Rho G and CDC42 small GTPases. Of interest, knockdown of FDPS in PCa cells exhibits decreased colony growth and proliferation (P<0.001) by modulating AKT and ERK pathways. Further, genetic and pharmacological inhibition of PI3K but not AKT reduced FDPS expression. Pharmacological targeting of FDPS by zoledronic acid (ZOL), which is already in clinics exhibit reduced growth and clonogenicity of human and murine PCa cells (P<0.01) and 3D tumoroids (P<0.02) by disrupting AKT and ERK signaling through direct interference of small GTPases protein prenylation. Thus, FDPS plays an oncogenic role in PTEN-deficient PCa through GTPase/AKT axis. Identifying mevalonate pathway proteins could serve as a therapeutic target in PTEN dysregulated tumors.
机译:法呢基二磷酸合酶(FDPS)是一种甲羟戊酸途径酶,在包括前列腺癌(PCa)在内的多种癌症中高表达。迄今为止,FDPS在癌症中的机制,功能和临床意义尚待探索。我们在缺乏PTEN以及足够的人和小鼠PCa细胞和肿瘤中使用体外和体内方法评估了FDPS表达及其与癌症相关的表型。有趣的是,与有条件的小鼠相比,FDPS过表达与PTEN有条件的基因敲除小鼠中的PTEN缺乏协同作用(P <0.05),并在人(P <0.001)PCa组织,细胞系和鼠类瘤中表达明显更高。计算机分析表明,FDPS与格里森评分增加,PTEN功能缺陷状态和PCa生存率低有关。 FDPS的异位过表达通过激活Rho A,Rho G和CDC42小GTPases的AKT和ERK信号来促进致癌表型,例如菌落形成(P <0.01)和增殖(P <0.01)。有趣的是,通过调节AKT和ERK途径,PCa细胞中FDPS的敲低表现出降低的菌落生长和增殖(P <0.001)。此外,PI3K的遗传和药理抑制作用而不是AKT抑制作用降低了FDPS表达。唑来膦酸(ZOL)对FDPS的药理靶向作用已经在临床中表现出通过干扰AKT和ERK信号通过直接干扰人和鼠PCa细胞(P <0.01)和3D瘤样物质(P <0.01)和3D瘤样物质而降低其生长和克隆形成性小GTPases蛋白异戊烯化。因此,FDPS通过GTPase / AKT轴在PTEN缺陷型PCa中起致癌作用。鉴定甲羟戊酸途径蛋白可以作为PTEN失调的肿瘤的治疗靶标。

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