RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Discovery of XNW5004 as a novel EZH2 inhibitor that enhances anti-tumor immunity and synergizes with PD-1 blockade immunotherapy in lung adenocarcinoma.
Discovery of XNW5004 as a novel EZH2 inhibitor that enhances anti-tumor immunity and synergizes with PD-1 blockade immunotherapy in lung adenocarcinoma.
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EZH2 抑制剂 XNW5004 增强抗肿瘤免疫,并与 PD-1 阻断免疫治疗在 LUAD 中协同相互作用,确立了这种联合方法作为一种有前景的治疗策略。
肺癌免疫治疗疗效的提升迫切需要协同策略。近期证据表明,zeste同源物2增强子(EZH2)是促进免疫抑制性肿瘤微环境的关键表观遗传调控因子,从而驱动免疫治疗耐药。我们假设EZH2药物抑制可增加免疫治疗敏感性。本研究旨在探讨新型EZH2抑制剂XNW5004使肺腺癌(LUAD)对程序性细胞死亡蛋白1(PD-1)阻断敏感的潜力。
体外实验中,通过克隆形成和凋亡实验评估了XNW5004在0-12 µM浓度下对肿瘤细胞的直接细胞毒性。采用肿瘤细胞与外周血单个核细胞的共培养体系评估免疫介导的杀伤作用。体内实验中,将免疫缺陷裸鼠和免疫健全C57BL/6小鼠随机分为对照组、XNW5004组、anti-PD1组和联合组,以评估肿瘤抑制效果。通过RNA测序以及全面的细胞和分子实验探究了潜在机制。
在体外,用1.5 µM XNW5004预处理肿瘤细胞可增强其对免疫细胞攻击的敏感性,导致残留细胞减少和凋亡增加,PD-1阻断进一步增强了这一效应。在体内,XNW5004在免疫健全的C57BL/6小鼠中抑制肿瘤生长,但在免疫缺陷裸鼠中效果甚微。在机制上,XNW5004刺激趋化因子介导的树突状细胞和T细胞向肿瘤部位募集。此外,它上调抗原呈递分子主要组织相容性复合体I类(MHC-I),同时增强共信号分子程序性死亡配体1(PD-L1)和细胞间黏附分子-1(ICAM-1)的表达。这些改变促进了CD8 + T细胞和NK 细胞的细胞毒性活性增强,表现为干扰素-γ和颗粒酶B增加。STING-TBK1-NF-κB轴是驱动这些表型变化的关键调控信号通路。
Synergistic strategies are urgently needed to enhance the efficacy of immunotherapy in lung cancer. Recent evidence highlights Enhancer of zeste homolog 2 (EZH2) as a pivotal epigenetic regulator that fosters an immunosuppressive tumor microenvironment, thereby driving immunotherapy resistance. We hypothesized that EZH2 pharmacological inhibition could increase immunotherapy susceptibility. This study aimed to investigate the potential of a novel EZH2 inhibitor, XNW5004, to sensitize lung adenocarcinoma (LUAD) to programmed cell death protein 1 (PD-1) blockade.
In vitro, colony formation and apoptosis assays assessed direct cytotoxicity of XNW5004 on tumor cells at 0-12 µM. A co-culture system of tumor cells and peripheral blood mononuclear cells evaluated immune-mediated killing. In vivo, immunodeficient nude mice and immunocompetent C57BL/6 mice were randomly assigned to the control, XNW5004, anti-PD1, and combination groups to assess the tumor suppressive effect. Underlying mechanisms were explored through RNA sequencing alongside comprehensive cellular and molecular assays.
In vitro, pre-treating tumor cells with 1.5 µM XNW5004 enhanced their sensitivity to immune cell attack, resulting in fewer residual cells and increased apoptosis, an effect further potentiated by PD-1 blockade. In vivo, XNW5004 suppressed tumor growth in immunocompetent C57BL/6 mice but showed minimal effect in immunodeficient nude mice. Mechanistically, XNW5004 stimulated chemokine-mediated recruitment of dendritic cells and T cells into tumor sites. Additionally, it upregulated the antigen presentation molecule major histocompatibility complex class I (MHC-I), while simultaneously augmenting the expression of co-signaling molecules programmed death ligand 1(PD-L1) and intercellular adhesion molecule-1 (ICAM-1). These alterations contributed to the augmented cytotoxic activity of both CD8 + T cells and natural killer cells, as evidenced by increased interferon-γ and granzyme B. The STING-TBK1-NF-κB axis functions as a pivotal regulatory signaling pathway driving these phenotype alterations.
The EZH2 inhibitor XNW5004 enhances anti-tumor immunity and synergistically interacts with PD-1 blockade immunotherapy in LUAD, establishing this combinatorial approach as a promising therapeutic strategy.
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