PO.TB04.06 · 肿瘤生物学
基于果蝇的筛选发现通过抑制NAD-GPx4轴诱导铁死亡是PDAC的一种治疗策略
Drosophila -based screening identifies ferroptosis induction via NAD-GPx4 axis inhibition as a therapeutic strategy for PDAC
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
胰腺导管腺癌(PDAC)仍是最致命的恶性肿瘤之一,利用哺乳动物模型阐明其致病机制已取得实质性进展。为实现对可干预脆弱点的系统性发现,我们构建了一个果蝇PDAC模型库,该模型库重现了人类疾病中观察到的关键遗传改变。在这些模型中,携带KRAS、TP53、CDKN2A和SMAD4改变的“四打击”果蝇(一种与最差临床预后相关的基因型)表现出显著的致瘤特征,包括上皮转化和机体存活能力受损。利用这一高保真模型进行的遗传筛选揭示了烟酰胺腺嘌呤二核苷酸(NAD)生物合成途径在促进PDAC进展中的关键作用。在该途径中,我们鉴定出谷胱甘肽过氧化物酶4(GPx4)是缓解活性氧(ROS)介导细胞毒性的关键效应因子。分别使用ML210和曲美替尼(trametinib)联合抑制GPx4和MEK,显著改善了四打击果蝇的致死性和肿瘤样表型。重要的是,这种联合治疗主要通过诱导ROS蓄积并触发铁死亡性细胞死亡,协同抑制了人类PDAC细胞及其相应异种移植瘤的增殖。总体而言,这些发现揭示了PDAC对NAD-GPx4氧化还原轴的保守依赖性,并证明治疗性诱导铁死亡是靶向遗传学上难治性PDAC的一种有前景的策略。
查看英文原文 English abstract
Pancreatic ductal adenocarcinoma (PDAC) remains one of the most lethal malignancies, and substantial progress has been made using mammalian models to elucidate its pathogenic mechanisms. To enable systematic discovery of actionable vulnerabilities, we generated a Drosophila PDAC model library that recapitulates key genetic alterations observed in human disease. Among these models, the “4-hit” flies-harboring alterations in KRAS , TP53 , CDKN2A , and SMAD4 , a genotype associated with the poorest clinical prognosis-exhibited robust tumorigenic manifestations, including epithelial transformation and impaired organismal viability. A genetic screen using this high-fidelity model uncovered a critical role for the nicotinamide adenine dinucleotide (NAD) biosynthesis pathway in promoting PDAC progression. Within this pathway, we identified glutathione peroxidase 4 (GPx4) as a key effector that mitigates reactive oxygen species (ROS)-mediated cytotoxicity. Combined inhibition of GPx4 and MEK using ML210 and trametinib, respectively, markedly ameliorated lethality and tumor-like phenotypes in the 4-hit flies. Importantly, this combinatorial treatment synergistically suppressed proliferation of human PDAC cells and their corresponding xenografts, primarily by inducing ROS accumulation and triggering ferroptotic cell death.Collectively, these findings reveal a conserved dependency of PDAC on the NAD-GPx4 redox axis and demonstrate that therapeutic induction of ferroptosis represents a promising strategy to target genetically refractory PDAC.
利益披露 Disclosure
M. Sonoshita,
FlyWorks, K.K. g., Board of Directors, non-salaried role), Stock.
FlyWorks America, Inc. g., Board of Directors, non-salaried role), Stock.