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:Combination of NKG2A and PD-1 Blockade Improves Radiotherapy Response in Radioresistant Tumors.
Combination of NKG2A and PD-1 Blockade Improves Radiotherapy Response in Radioresistant Tumors.
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放疗(RT)常用于治疗实体瘤。程序性死亡蛋白1(PD-1)和CTLA-4免疫检查点阻断可提高放疗患者生存率,但许多患者对联合治疗无应答。NKG2受体家族,尤其是抑制性NKG2A和活化性NKG2D,已成为改善抗肿瘤T细胞应答的潜在治疗靶点。
因此,我们在携带同系B16F10黑色素瘤或MC38结直肠腺癌的C57BL/6小鼠中,研究这些受体及其配体Qa-1b和早期视黄酸诱导蛋白1(Rae-1)如何调节放疗反应。15 Gy放疗短暂降低B16F10肿瘤负荷,而MC38肿瘤对放疗产生持久应答。两种模型的肿瘤内NK和CD8 T细胞均表达NKG2A及NKG2D,放疗对此无影响。体外及体内放疗均增加两种模型中肿瘤及基质细胞Qa-1b和Rae-1的表达,尤其在B16F10肿瘤中明显;IFN-γ刺激则仅在B16F10肿瘤中诱导Qa-1b和Rae-1。单独抑制NKG2A/Qa-1b未改善任何模型的放疗反应,但B16F10模型中放疗联合阻断NKG2A和PD-1可延长生存。细胞清除实验显示,三联疗法疗效依赖CD8 T细胞,NK细胞贡献很小。对接受三联疗法的B16F10肿瘤CD8 T细胞进行RNA测序,发现其增殖能力高于仅接受放疗和PD-1阻断者。
本研究显示,放疗可调节NKG2A配体表达,而在对放疗与PD-1阻断联合治疗无应答的肿瘤中,这会抑制放疗诱导的T细胞应答。这些结果支持将NKG2A阻断与免疫检查点阻断及放疗联合,以改善临床应答。
Radiotherapy (RT) is commonly employed to treat solid tumors. Immune checkpoint blockade of programmed cell death protein 1 (PD-1) and CTLA-4 improves survival in RT patients, yet many fail to respond to combination therapy. Natural killer group 2 (NKG2) family receptors, particularly inhibitory NKG2A and activating NKG2D, have emerged as promising therapeutic targets to improve antitumor T cell responses; thus, we examined how these receptors and their ligands (Qa-1 b and retinoic acid early inducible 1 [Rae-1], respectively) regulate the RT response in C57BL/6 mice bearing syngeneic B16F10 melanoma and MC38 colorectal adenocarcinoma tumors. RT (15 Gy) transiently reduced B16F10 tumor burden, whereas MC38 tumors exhibited durable response to RT.
Intratumoral NK and CD8 T cells expressed NKG2A and NKG2D in both models, which was unaltered by RT. In vitro/in vivo RT increased tumor/stromal cell Qa-1 b and Rae-1 expression in both models, especially B16F10 tumors, but IFN- stimulation induced both Qa-1 b and Rae-1 only in B16F10 tumors.
NKG2A/Qa-1 b inhibition alone did not improve RT response in either model, but combined RT and NKG2A/PD-1 blockade improved survival in the B16F10 model. Depletion experiments indicate that the triple therapy efficacy is CD8 T cell-dependent with negligible NK cell contribution. RNA sequencing of CD8 T cells from triple therapy-treated B16F10 tumors showed increased proliferative capacity compared with RT and PD-1 blockade alone.
Our work demonstrates that RT modulates NKG2A ligand expression, which inhibits RT-induced T cell responses in tumors that fail to respond to combined RT and PD-1 blockade. These results provide a rationale for combining NKG2A blockade with immune checkpoint blockade therapies and RT to improve clinical response.
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