CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Transgelin 2 guards T cell lipid metabolism and antitumour function.
Transgelin 2 guards T cell lipid metabolism and antitumour function.
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针对病原体和肿瘤的有效免疫依赖于细胞外脂肪酸对T细胞成功的代谢编程1-3。脂肪酸结合蛋白5(FABP5)在这一过程中发挥关键作用,通过协调脂质的高效输入和转运,为线粒体呼吸提供燃料,以维持保护性CD8+ T细胞的生物能量需求4,5。
然而,调控这一免疫代谢轴的机制仍未被探索。在此我们报道,细胞骨架组织蛋白transgelin 2(TAGLN2)对于CD8+ T细胞实现最佳脂肪酸摄取、线粒体呼吸和抗癌功能是必需的。TAGLN2与FABP5相互作用,促进其在活化CD8+ T细胞中的细胞表面定位和功能。对卵巢癌标本的分析显示,肿瘤微环境诱导的内质网(ER)应激反应抑制了浸润性CD8+ T细胞中的TAGLN2,从而强制其进入功能障碍状态。在ER应激的CD8+ T细胞中恢复TAGLN2表达可增加其脂质摄取、线粒体呼吸和细胞毒性能力。相应地,过表达TAGLN2的CAR-T 细胞绕过了肿瘤诱导的ER应激的有害影响,并在转移性卵巢癌小鼠中显示出治疗疗效。
我们的研究确立了细胞骨架TAGLN2在T细胞脂质代谢中的作用,并强调了通过保护TAGLN2-FABP5轴来增强实体恶性肿瘤细胞免疫治疗的潜力。
Mounting effective immunity against pathogens and tumours relies on the successful metabolic programming of T cells by extracellular fatty acids 1-3 . Fatty-acid-binding protein 5 (FABP5) has a key role in this process by coordinating the efficient import and trafficking of lipids that fuel mitochondrial respiration to sustain the bioenergetic requirements of protective CD8 + T cells 4,5 .
However, the mechanisms that govern this immunometabolic axis remain unexplored.
Here we report that the cytoskeletal organizer transgelin 2 (TAGLN2) is necessary for optimal fatty acid uptake, mitochondrial respiration and anticancer function in CD8 + T cells. TAGLN2 interacts with FABP5 to facilitate its cell surface localization and function in activated CD8 + T cells. Analyses of ovarian cancer specimens revealed that endoplasmic reticulum (ER) stress responses induced by the tumour microenvironment repress TAGLN2 in infiltrating CD8 + T cells, thereby enforcing their dysfunctional state.
Restoring TAGLN2 expression in ER-stressed CD8 + T cells increased their lipid uptake, mitochondrial respiration and cytotoxic capacity. Accordingly, chimeric antigen receptor T cells overexpressing TAGLN2 bypassed the detrimental effects of tumour-induced ER stress and demonstrated therapeutic efficacy in mice with metastatic ovarian cancer.
Our study establishes the role of cytoskeletal TAGLN2 in T cell lipid metabolism and highlights the potential to enhance cellular immunotherapy in solid malignancies by preserving the TAGLN2-FABP5 axis.
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