PO.ET06.01 · 实验与分子治疗
GPX4-FTH1-ARNT信号调控铁外排以抑制铁死亡性细胞死亡并促进骨肉瘤中的免疫重塑
GPX4-FTH1-ARNT signaling regulates iron efflux to suppress ferroptotic cell death and promote immune remodeling in osteosarcoma
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
骨肉瘤是儿童和青年人中最主要的原发性恶性骨肿瘤。尽管采用了包括手术和多药化疗在内的多模式治疗,患者生存率在过去四十年间始终停滞不前,亟需开发新型、有效的治疗策略。铁死亡是一种铁依赖性程序性细胞死亡,是骨肉瘤中一个有前景的治疗靶点。我们近期的研究结果表明,骨肉瘤细胞可能通过铁转运蛋白(ferroportin,FPN)输出体促进铁解毒,从而规避GPX4介导的铁死亡。本研究旨在阐明骨肉瘤细胞抵御与胞内过量铁相关的氧化还原应激的分子机制,并评估这一调控对肿瘤免疫微环境的潜在影响。首先,我们发现,在TCGA数据集中,编码负责细胞铁摄取的转铁蛋白受体的TFRC基因与宫颈癌、胶质母细胞瘤、肝癌和肾癌中较差的生存时间相关。相反,编码FPN的SLC40A1在肝癌、胰腺腺癌和肾癌中显示出良好的临床关联。在来自Target Osteosarcoma数据库的人类骨肉瘤(n = 88)中,SLC40A1表达与总体免疫基因评分(r = 0.241,p = 0.024)和M1巨噬细胞转录本(r = 0.340,p = 0.001)呈正相关。犬骨肉瘤(n = 43)的比较转录组分析显示,铁相关基因包括FTH1(r = 0.659,p < 0.0001)、SLC39A8(r = 0.665,p < 0.0001)和ALAS1(r = 0.573,p < 0.0001)与免疫评分相关。在DOUG犬骨肉瘤细胞中,用GPX4抑制剂RSL3处理显著改变了参与组织损伤和重塑的基因的表达特征,包括ECM-受体相互作用、PI3K-AKT和AGE-RAGE信号通路中的基因。具体而言,RSL3处理导致ARNT(编码HIF-1beta)和ALDH3A1显著上调,二者均为解毒和氧化应激反应通路的关键组分。此外,另一种铁死亡诱导剂erastin在犬DOUG和COS31及DOUG犬骨肉瘤细胞中均大幅增加了HMOX1(一种关键的抗氧化防御基因)的表达。这些数据共同表明,骨肉瘤细胞采用了强大的调控机制来管理铁解毒和抗氧化防御,可能影响肿瘤免疫。此外,我们正在进行的研究正在探讨GPX4-ARNT-FTH1轴在骨肉瘤免疫调节过程中的机制作用。这项工作还将寻求识别一种调控铁代谢与肿瘤免疫之间相互作用的保守跨物种机制,从而利用自然发生的犬骨肉瘤建立转化模型。
查看英文原文 English abstract
Osteosarcoma is the leading primary malignant bone tumor in children and young adults. Despite multimodal therapy involving surgery and multi-agent chemotherapy, patient survival rates have remained stagnant over the past four decades, necessitating the development of novel, effective therapeutic strategies. Ferroptosis, an iron-dependent programmed cell death, is a promising therapeutic target in osteosarcoma. Our recent findings indicate that osteosarcoma cells may circumvent GPX4-mediated ferroptosis by promoting iron detoxification through the ferroportin (FPN) exporter. This study was designed to define the molecular mechanisms by which osteosarcoma cells withstand redox stress associated with excess intracellular iron and to assess the potential impact of this regulation on the tumor immune microenvironment. First, we found that the TFRC gene, encoding the transferrin receptor responsible for cellular iron uptake, was associated with poor survival time in cervical cancer, glioblastoma, and liver cancer, and renal cancer in TCGA datasets. In contrast, SLC40A1 encoding FPN showed favorable clinical associations in liver cancer, pancreatic adenocarcinoma, and renal cancer. In human osteosarcomas (n = 88) from the Target Osteosarcoma database, SLC40A1 expression was positively correlated with overall immune gene scores (r = 0.241, p = 0.024) and M1 macrophage transcripts (r = 0.340, p = 0.001). Comparative transcriptomic analysis in canine osteosarcomas (n = 43) revealed that iron-related genes, including FTH1 (r = 0.659, p < 0.0001), SLC39A8 (r = 0.665, p < 0.0001), and ALAS1 (r = 0.573, p < 0.0001), were associated with immune scores. In DOUG canine osteosarcoma cells, treatment with the GPX4 inhibitor RSL3 significantly altered the expression signature of genes involved in tissue damage and remodeling, including those in in the ECM-receptor interaction, PI3K-AKT, and AGE-RAGE signaling pathway. Specifically, RSL3 treatment resulted in the marked upregulation of ARNT (encoding HIF-1beta) and ALDH3A1, both critical components of detoxification and oxidative stress response pathways. Furthermore, Erastin, another ferroptosis inducer, substantially increased HMOX1, a key antioxidant defense gene, in both canine DOUG and COS31 and DOUG canine osteosarcoma cells. These data collectively suggest that osteosarcoma cells employ robust regulatory mechanisms governing iron detoxification and antioxidant defense, potentially influencing tumor immunity. Furthermore, our ongoing studies are investigating the mechanistic role of the GPX4-ARNT-FTH1 axis in immunomodulatory processes in osteosarcomas. This work will also seek to identify a conserved cross-species mechanism that regulates the interplay between iron metabolism and tumor immunity, enabling translational models using naturally occurring canine osteosarcoma.
利益披露 Disclosure
M. Abdullah, None..
D. Lee, None.