CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Fatty Acids Support the Fitness and Functionality of Tumor-Resident CD8+ T Cells by Maintaining SCML4 Expression.
Fatty Acids Support the Fitness and Functionality of Tumor-Resident CD8+ T Cells by Maintaining SCML4 Expression.
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未标注摘要:CD8⁺ 组织驻留记忆 T(Trm)细胞和TIL(肿瘤浸润淋巴细胞)调节肿瘤免疫和免疫监视。对 Trm 细胞和 TIL 的特征进行分析,有助于确定增强抗肿瘤免疫的潜在策略。本研究发现,转录因子 SCML4 是 Trm 细胞发育和多功能性的必要因素,并与癌症患者更好的预后相关。此外,SCML4 维持 TIL 的多种功能。提高 CD8⁺ 细胞中的 SCML4 表达可显著抑制小鼠多种肿瘤的生长;删除 SCML4 则会减弱抗肿瘤免疫并促进 CD8⁺ T 细胞耗竭。在机制上,SCML4 招募 HBO1-BRPF2-ING4 复合物,重编程 T 细胞特异性基因表达,从而增强 Trm 细胞和 TIL 的存活及效应功能。脂肪酸代谢通过 mTOR-IRF4-PRDM1 信号促进 SCML4 表达;脂肪酸代谢诱导的表观遗传修饰则促进 Trm 细胞和 TIL 中组织驻留及多功能相关基因表达。SCML4 通过提高 TIL 中效应分子的表达并抑制其凋亡,增强抗 PD-1 治疗效果;加入 H3K14ac 去乙酰化抑制剂后,该效果还可进一步增强。这些结果从机制角度揭示了肿瘤局部 Trm 细胞和 TIL 的功能调节,并确定了肿瘤免疫治疗的重要激活靶点。意义:脂肪酸代谢诱导 CD8⁺ Trm 细胞和 TIL 中 SCML4 上调,可增强抗肿瘤免疫反应,提示存在可用于癌症治疗的免疫代谢轴。相关评论见 Chakraborty 等人,第 3321 页。
UNLABELLED: CD8+ tissue-resident memory T (Trm) cells and tumor-infiltrating lymphocytes (TIL) regulate tumor immunity and immune surveillance. Characterization of Trm cells and TILs could help identify potential strategies to boost antitumor immunity.
Here, we found that the transcription factor SCML4 was required for the progression and polyfunctionality of Trm cells and was associated with a better prognosis in patients with cancer.
Moreover, SCML4 maintained multiple functions of TILs. Increased expression of SCML4 in CD8+ cells significantly reduced the growth of multiple types of tumors in mice, while deletion of SCML4 reduced antitumor immunity and promoted CD8+ T-cell exhaustion.
Mechanistically, SCML4 recruited the HBO1-BRPF2-ING4 complex to reprogram the expression of T cell-specific genes, thereby enhancing the survival and effector functions of Trm cells and TILs. SCML4 expression was promoted by fatty acid metabolism through mTOR-IRF4-PRDM1 signaling, and fatty acid metabolism-induced epigenetic modifications that promoted tissue-resident and multifunctional gene expression in Trm cells and TILs. SCML4 increased the therapeutic effect of anti-PD-1 treatment by elevating the expression of effector molecules in TILs and inhibiting the apoptosis of TILs, which could be further enhanced by adding an inhibitor of H3K14ac deacetylation.
These results provide a mechanistic perspective of functional regulation of tumor-localized Trm cells and TILs and identify an important activation target for tumor immunotherapy. SIGNIFICANCE: SCML4 upregulation in CD8+ Trm cells and tumor-infiltrating lymphocytes induced by fatty acid metabolism enhances antitumor immune responses, providing an immunometabolic axis to target for cancer treatment. See related commentary by Chakraborty et al. , p. 3321.
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