HMGB3 Contributes to Anti-PD-1 Resistance by Inhibiting IFN-γ-Driven Ferroptosis in TNBC.

IF 3 2区 医学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular Carcinogenesis Pub Date : 2025-03-01 Epub Date: 2024-12-11 DOI:10.1002/mc.23861
Bo Luo, Hongmei Zheng, Gai Liang, Yan Luo, Qu Zhang, Xiang Li
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Abstract

Our previous studies showed HMGB3 expression may correlate with immunotherapy efficacy in breast cancer patients. Here, we investigated whether HMGB3 overexpression has an impact on anti-PD-1 therapy in triple-negative breast cancer (TNBC) and its molecular mechanisms. Animal models were established to observe the effect of HMGB3 on sensitivity to anti-PD-1 treatment. Correlation of HMGB3 expression and ferroptosis preventive proteins in TNBC patients' tissues with anti-PD-1 therapy efficacy was analyzed. The impact of HMGB3 on IFN-γ (Interferon-gamma) inhibitory effects and signaling was examined in human TNBC cells where HMGB3 expression was knocked down using siRNA. Moreover, TNBC cells stably transfected with lentiviral vectors containing cDNA of HMGB3 were also used to confirm the effect of overexpression of HMGB3 on IFN-γ inhibitory effect and signaling. Effect of HMGB3 on IFN-γ-driven ferroptosis and ferroptosis-associated protein expression were also investigated. Correlation of HMGB3 and IRF1 and GPX4 expression in patient's cancer tissue were also investigated. Our results demonstrated that HMGB3 expression contributes to resistance to anti-PD-1 therapy in vivo. HMGB3 expression correlated with treatment efficacy of immunotherapy and survival in TNBC patients. HMGB3 silence decreased resistance of breast cancer cells to IFN-γ cytotoxic effect, while HMGB3 overexpression increased resistance of these cancer cells. HMGB3 silence increased STAT1 phosphorylation and IRF1 expression upon IFN-γ treatment compared with control. Overexpression of HMGB3 inhibited STAT1 phosphorylation and IFN-γ signaling in TNBC cells. Moreover, HMGB3 also increased STAT3 activation and had an effect of interaction between STAT1 and STAT3. HMGB3 overexpression decreased IFN-γ-driven ferroptosis in TNBC cells. HMGB3 increased ferroptosis-inhibitory proteins (SLC7A11, GPX4, and SLC3A2) expression in TNBC cells. Ferroptosis inhibition recovers resistance to anti-PD-1 therapy in vivo. Immunohistochemistry showed HMGB3 expression correlated with ferroptosis-associated proteins and IRF1 expression in breast cancer tissue. HMGB3 contributes to anti-PD-1 resistance by inhibiting IFN-γ-driven ferroptosis in TNBC which suggested HMGB3 is a potential co-target with anti-PD-1 therapy for TNBC.

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HMGB3通过抑制IFN-γ驱动的TNBC铁质坏死参与抗pd -1抗性。
我们之前的研究表明HMGB3的表达可能与乳腺癌患者的免疫治疗效果有关。在这里,我们研究了HMGB3过表达是否影响三阴性乳腺癌(TNBC)的抗pd -1治疗及其分子机制。建立动物模型,观察HMGB3对抗pd -1治疗敏感性的影响。分析TNBC患者组织中HMGB3表达与铁下垂预防蛋白与抗pd -1治疗效果的相关性。在使用siRNA敲低HMGB3表达的人类TNBC细胞中,研究了HMGB3对IFN-γ(干扰素-γ)抑制作用和信号传导的影响。此外,用含有HMGB3 cDNA的慢病毒载体稳定转染TNBC细胞,也证实了HMGB3过表达对IFN-γ抑制作用和信号传导的影响。HMGB3对IFN-γ驱动的铁下垂和铁下垂相关蛋白表达的影响也进行了研究。研究HMGB3与患者癌组织中IRF1、GPX4表达的相关性。我们的研究结果表明,HMGB3的表达有助于体内抗pd -1治疗的耐药。HMGB3表达与TNBC患者免疫治疗疗效及生存相关。HMGB3沉默降低了乳腺癌细胞对IFN-γ细胞毒作用的抗性,而HMGB3过表达增加了这些癌细胞的抗性。与对照组相比,HMGB3沉默增加了IFN-γ处理后STAT1磷酸化和IRF1表达。HMGB3过表达抑制TNBC细胞中STAT1磷酸化和IFN-γ信号传导。此外,HMGB3还增加了STAT3的激活,并具有STAT1与STAT3相互作用的作用。HMGB3过表达可降低IFN-γ驱动的TNBC细胞铁下垂。HMGB3增加TNBC细胞中凋亡抑制蛋白(SLC7A11、GPX4和SLC3A2)的表达。铁下垂抑制恢复体内抗pd -1治疗的抗性。免疫组化结果显示HMGB3表达与乳腺癌组织中凋亡相关蛋白及IRF1表达相关。HMGB3通过抑制IFN-γ驱动的TNBC铁质凋亡而参与抗pd -1耐药,这表明HMGB3是TNBC抗pd -1治疗的潜在共同靶点。
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来源期刊
Molecular Carcinogenesis
Molecular Carcinogenesis 医学-生化与分子生物学
CiteScore
7.30
自引率
2.20%
发文量
112
审稿时长
2 months
期刊介绍: Molecular Carcinogenesis publishes articles describing discoveries in basic and clinical science of the mechanisms involved in chemical-, environmental-, physical (e.g., radiation, trauma)-, infection and inflammation-associated cancer development, basic mechanisms of cancer prevention and therapy, the function of oncogenes and tumors suppressors, and the role of biomarkers for cancer risk prediction, molecular diagnosis and prognosis.
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