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Targeting the Mevalonate Pathway Suppresses VHL-Deficient CC-RCC through an HIF-Dependent Mechanism

机译:靶向甲烷酸途径通过HIF依赖机构抑制VHL缺陷的CC-RCC

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Clear cell renal cell carcinoma (CC-RCC) is a devastating disease with limited therapeutic options available for advanced stages. The objective of this study was to investigate HMG-CoA reductase inhibitors, also known as statins, as potential therapeutics for CC-RCC. Importantly, treatment with statins was found to be synthetically lethal with the loss of the von Hippel-Lindau (VHL) tumor suppressor gene, which occurs in 90% of CC-RCC driving the disease. This effect has been confirmed in three different CC-RCC cell lines with three different lipophilic statins. Inhibition of mevalonate synthesis by statins causes a profound cytostatic effect at nanomolar concentrations and becomes cytotoxic at low micromolar concentrations in VHL-deficient CC-RCC. The synthetic lethal effect can be fully rescued by both mevalonate and geranylgeranylpyrophosphate, but not by squalene, indicating that the effect is due to disruption of small GTPase isoprenylation and not the inhibition of cholesterol synthesis. Inhibition of Rho and Rho kinase (ROCK) signaling contributes to the synthetic lethality effect, and overactivation of hypoxia-inducible factor signaling resulting from VHL loss is required. Finally, statin treatment is able to inhibit both tumor initiation and progression of subcutaneous 786-OT1-based CC-RCC tumors in mice. Thus, statins represent potential therapeutics for the treatment of VHL-deficient CC-RCC. (C) 2018 AACR.
机译:透明细胞肾细胞癌(CC-RCC)是一种毁灭性的疾病,可用于高级阶段的治疗方案有限。本研究的目的是研究HMG-COA还原酶抑制剂,也称为他汀类药物,作为CC-RCC的潜在治疗方法。重要的是,发现用他汀类药物治疗在von Hippel-lindau(VHL)肿瘤抑制基因的损失中易致死,其在90%的CC-RCC驱动疾病中发生。该效果已在三种不同的CC-RCC细胞系中确认,具有三种不同的亲脂菌素。胰岛素抑制甲醛合成导致纳米摩尔浓度的深远细胞抑制作用,并在VHL缺陷的CC-RCC中以低微摩尔浓度变为细胞毒性。合成的致命作用可以通过甲戊二醇盐和甲苯基甲基苯基磷酸盐完全救出,但不是由Squalene拯救,表明效果是由于小GTP酶异戊二烯化的破坏而不是抑制胆固醇合成。 rhO和rhO激酶(岩石)信号传导的抑制有助于合成致致死效应,并且需要过氧诱导因子信号传导的缺氧诱导因子信号传导。最后,他汀类药物治疗能够抑制小鼠中皮下786-OT1的CC-RCC肿瘤的肿瘤起始和进展。因此,他汀类药物代表治疗VHL缺陷CC-RCC的潜在治疗方法。 (c)2018年AACR。

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