PO.ET07.02 · 实验与分子治疗
共同靶向两条不同的雄激素受体调控信号通路作为前列腺癌的治疗策略
Co-targeting of two distinct androgen receptor-regulated signaling pathways as a therapeutic approach in prostate cancer
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摘要 Abstract
中文摘要
前列腺癌(PCa)是男性中最常被诊断的癌症,也是美国癌症相关死亡的第二大原因。雄激素剥夺治疗(ADT)最初有效;然而,大多数患者最终会复发并进展为去势抵抗性前列腺癌(CRPC),此时尽管暴露于极低水平的雄激素,肿瘤仍持续生长。在探究前列腺癌中雄激素受体(AR)药理学的分子决定因素时,我们意外地观察到前列腺癌细胞能够识别并对不同水平的雄激素做出不同反应。值得注意的是,我们证明低水平雄激素通过AR单体发挥作用,促进哺乳动物雷帕霉素靶蛋白(mTOR)信号通路的非基因组激活以驱动增殖。相反,我们发现正常性腺水平的雄激素(高剂量;HD)促进AR二聚体形成,从而主动抑制c-MYC表达、抑制增殖,并驱动与分化表型相关的转录程序。
为阐明AR激活mTOR信号的机制,我们在经验证的前列腺癌细胞模型中剖析了雄激素启动的分子事件。这些研究揭示,雄激素通过AR诱导AKT在S473位点的磷酸化,这是AR驱动通路中一个早期且此前未被认识的调控节点。既往研究已确立AKT S473磷酸化由mTOR复合物2(mTORC2)介导,并可被胰岛素样生长因子1(IGF-1)刺激。事实上,我们证明IGF-1信号是雄激素依赖性mTOR激活和细胞增殖所绝对必需的。这些结果提示,雄激素/AR作用于mTOR上游,放大IGF-1-AKT信号轴的活性,而非直接作用于mTOR通路组分。
虽然我们已确立AR驱动的mTOR激活是通过IGF-1-AKT轴发生的,但我们的数据还揭示了一个以c-MYC为中心的、独特的AR调控生长程序。值得注意的是,抑制IGF-1-AKT-mTOR通路可抑制前列腺癌细胞体外增殖,但未能降低c-MYC表达,表明单独靶向该轴不太可能实现对疾病的持久控制。因此,我们发现HD雄激素在维持mTOR激活的同时下调c-MYC表达具有重要意义。利用这些洞见,我们在前列腺癌异种移植模型中评估了将AKT抑制与HD雄激素治疗联合应用的效用。该联合策略优于任一单独治疗,实现了对肿瘤生长的强力抑制。总之,这些发现建立了雄激素对前列腺癌生物学剂量依赖性效应的机制框架,并凸显了双重靶向策略在克服前列腺癌对标准治疗耐药方面的潜在临床价值。
查看英文原文 English abstract
Prostate cancer (PCa) is the most frequently diagnosed cancer in men and the second leading cause of cancer-related deaths in the United States. Androgen deprivation therapy (ADT) is initially effective; however, most patients eventually relapse and progress to castration-resistant prostate cancer (CRPC), where tumor growth persists despite being exposed to extremely low levels of androgens. In probing the molecular determinants of androgen receptor (AR) pharmacology in PCa, we made the unexpected observation that PCa cells can recognize and respond differently to different levels of androgens. Notably, we demonstrated that low levels of androgens, functioning through an AR monomer, facilitate a non-genomic activation of the mammalian target of rapamycin (mTOR) signaling pathway to drive proliferation. Conversely, we found that eugonadal levels of androgens (high dose; HD) promote AR dimer formation, which actively suppress c-MYC expression, inhibit proliferation, and drive a transcriptional program associated with a differentiated phenotype.
To elucidate the mechanism(s) by which AR activates mTOR signaling, we dissected the molecular events initiated by androgens in validated cellular models of PCa. These studies revealed that androgens, acting through AR, induce AKT phosphorylation at S473, an early and previously unrecognized regulatory node in AR-driven pathways. Prior studies have established that AKT S473 phosphorylation is mediated by mTOR complex 2 (mTORC2) and can be stimulated by insulin-like growth factor-1 (IGF-1). Indeed, we demonstrated that IGF-1 signaling was absolutely required for androgen-dependent mTOR activation and cell proliferation. These results suggest that androgens/AR act upstream of mTOR to amplify the activity of the IGF-1-AKT signaling axis rather than directly engaging mTOR pathway components.
While we have established that AR-driven mTOR activation occurs through the IGF-1-AKT axis, our data also revealed a distinct AR-regulated growth program centered on c-MYC. Notably, inhibition of the IGF-1-AKT-mTOR pathway suppresses PCa cell proliferation in vitro but fails to reduce c-MYC expression, indicating that targeting this axis alone is unlikely to achieve durable control of the disease. It is significant, therefore, that we determined that HD androgens downregulate c-MYC expression while maintaining mTOR activation. Leveraging these insights, we evaluated the utility of combining AKT inhibition with HD androgen treatment in a xenograft model of PCa. This combination strategy was superior to either treatment alone, resulting in robust suppression of tumor growth. Together, these findings establish a mechanistic framework for the dose-dependent effects of androgens on PCa biology and highlight the potential clinical utility of dual-targeting approaches to overcome resistance to standard of care treatments in PCa.
利益披露 Disclosure
M. Ko, None..
R. Safi, None.
S. E. Wardell,
Sermonix Pharmaceuticals ).
Precede Bioscience ).
Menarini Group Other Intellectual Property.
Adara Therapeutics Stock.
P. Watkinson, None..
I. Jones, None..
B. Richardson, None..
J. D. Norris, None.
D. P. McDonnell,
Adara Therapeutics. g., Board of Directors, non-salaried role), Stock.
BMS Independent Contractor, ).
Intracellular Therapeutics ).
Coregen Therapeutics Independent Contractor.
Parabilis Medicine Independent Contractor.
Precede Biosciences Independent Contractor, ).
Radius Health Other Intellectual Property.
Sermonix ), Other Intellectual Property.
Menarini ).
Z-alpha Independent Contractor.
Interdict Biosciences Independent Contractor, Stock.