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E2F1-HMGCR 轴促进免疫难治性肿瘤细胞的铁死亡抵抗

英文原题:The E2F1-HMGCR axis promotes ferroptosis resistance in immune refractory tumor cells.

查看英文原题

The E2F1-HMGCR axis promotes ferroptosis resistance in immune refractory tumor cells.

PubMed 2025/12/03(内容时间) Nat Commun Q1 · IF 18.1(JCR 2025)

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中文摘要

在癌症免疫编辑过程中,癌细胞通过失调细胞死亡执行机制来逃逸免疫治疗诱导的抗肿瘤免疫。铁死亡是一种由脂质过氧化触发的调节性坏死,在基于T细胞的免疫疗法的抗肿瘤活性中发挥关键作用;然而,免疫难治性肿瘤细胞中铁死亡调控的机制尚不清楚。在本研究中,我们利用通过PD-1阻断和过继性T细胞疗法(ACT)进行免疫编辑后获得的免疫难治性肿瘤的临床前模型,发现基于T细胞的免疫治疗驱动肿瘤细胞产生铁死亡抗性。在这一过程中,E2F1被免疫治疗上调,进而结合HMGCR基因的启动子以上调HMGCR,从而促进铁死亡抗性。值得注意的是,抑制HMGCR使免疫难治性肿瘤细胞对ACT和PD-1阻断敏感。因此,我们的结果揭示了癌细胞调控铁死亡以获得免疫治疗抗性的机制,并表明E2F1-HMGCR轴是控制免疫难治性癌症铁死亡抗性的核心分子靶点。

展开英文摘要原文

During cancer immunoediting, cancer cells deregulate cell death executioner mechanisms to escape immunotherapy-induced antitumor immunity. Ferroptosis, a type of regulated necrosis triggered by lipid peroxidation, plays a pivotal role in the anti-tumor activity of T cell-based immunotherapies; however, mechanisms for the modulation of ferroptosis in immune-refractory tumor cells are unclear.

In this study, using preclinical models of immune refractory tumors obtained following the course of immunoediting by PD-1 blockade and adoptive T cell therapy (ACT), we find that T cell-based immunotherapy drives the development of ferroptosis resistance of tumor cells. In this process, E2F1 is upregulated by immunotherapy and it in turn binds to the promoter of the HMGCR gene to upregulate HMGCR, thereby contributing to the resistance to ferroptosis.

Notably, HMGCR inhibition renders immune-refractory tumor cells susceptible to ACT and PD-1 blockade.

Thus, our results reveal a mechanism by which cancer cells modulate ferroptosis to acquire resistance to immunotherapy and implicate the E2F1-HMGCR axis as a central molecular target for controlling ferroptosis resistance of immune-refractory cancer.

论文信息

作者
Son SW、Lee HJ、Kang N、Bae S、Cho E、Kwon H、Yoon DY、Lee C
第一作者单位
Department of Cell biology, Daegu Catholic University School of Medicine, Daegu, South Korea.South Korea
通讯作者单位
Department of Cell biology, Daegu Catholic University School of Medicine, Daegu, South Korea. khsong@cu.ac.kr.South Korea
期刊
Nature communications2025 Dec 3
原文标识
PubMed 41339438 · DOI 10.1038/s41467-025-66282-x