免疫检查点阻断通过扩增效应 CD8⁺ T 细胞克隆增强淋巴细胞清除性化疗诱导的抗肿瘤免疫
Immune Checkpoint Blockade Augments Lymphodepleting Chemotherapy-Induced Antitumor Immunity by Expanding Effector CD8+ T-cell Clones.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:TMEM33 deletion potentiates anti-tumor CD8(+) T cell immunity.
TMEM33 deletion potentiates anti-tumor CD8(+) T cell immunity.
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改善对癌症免疫疗法的反应需要更深入地了解调控T细胞介导的抗肿瘤免疫的细胞机制。TMEM33是一种内质网驻留跨膜蛋白,在多种肿瘤类型中富集,据报道在抗病毒免疫及钙和脂质稳态中发挥作用,但其在肿瘤免疫监视中的角色仍未知。利用小鼠遗传模型,我们证明宿主TMEM33限制了抗肿瘤CD8+T细胞反应。组成性Tmem33-/-小鼠表现出延迟的黑色素瘤肿瘤生长和增加的CD8+T细胞浸润。在Tmem33-/-小鼠的肿瘤中,抗原特异性CD8+区室显示TCF-1+PD-1+祖细胞耗竭细胞(Tpex)富集,效应功能升高,耗竭减少,同时在引流淋巴结中改善了效应记忆扩增和T-bet表达。
我们强调TMEM33在T细胞区室内部功能上发挥作用,因为TMEM33缺失(1)增强了外源新分离的初始CD8+T细胞的多克隆激活,(2)在B16F10-OVA肿瘤和引流淋巴结中促进了过继转移的初始OT-I细胞的优先Tpex积累,(3)提高了体外扩增的OT-I细胞在过继细胞治疗中控制肿瘤生长的效力。
最后,在一个大规模前瞻性招募的转移性黑色素瘤队列中,患者CD8+T细胞中较低的TMEM33表达与改善的生存率和升高的TCF-7(编码TCF-1)显著相关。
总体而言,我们的发现将TMEM33定义为一个先前未被识别的、决定肿瘤定向CD8+T细胞命运的内在因素,它限制Tpex维持,并抑制细胞治疗反应,提示其调节可能增强免疫治疗效力。
Improving responses to cancer immunotherapies requires deeper insight into the cellular mechanisms governing T cell-mediated anti-tumor immunity. TMEM33 is an endoplasmic reticulum-resident transmembrane protein enriched across multiple tumor types, with reported functions in anti-viral immunity as well as calcium and lipid homeostasis, yet its role in tumor immunosurveillance remains unknown.
Using murine genetic models, we demonstrate that host TMEM33 constrains anti-tumor CD8 + T cell responses. Constitutive Tmem33 -/- mice exhibited delayed melanoma tumor growth and increased CD8 + T cell infiltration. Antigen-specific CD8 + compartments in tumors of Tmem33 -/- mice showed TCF-1 + PD-1 + progenitor-exhausted cell (Tpex) enrichment, elevated effector function and reduced exhaustion, alongside improved effector memory expansion and T-bet expression in draining lymph nodes.
We highlight that TMEM33 functions intrinsically within the T cell compartment, as TMEM33 deletion (1) enhanced polyclonal activation of naive CD8 + T cells ex vivo , (2) promoted preferential Tpex accumulation among adoptively transferred naive OT-I cells in B16F10-OVA tumors and draining lymph nodes, and (3) improved the potency of ex vivo -expanded OT-I cells in controlling tumor growth during adoptive cell therapy.
Finally, in a large, prospectively recruited metastatic melanoma cohort, lower TMEM33 expression in patient CD8 + T cells significantly correlated with improved survival and elevated TCF-7 (encoding TCF-1). Collectively, our findings define TMEM33 as a formerly unrecognized intrinsic determinant of tumor-directed CD8 + T cell fate that limits Tpex maintenance, and restrains cell therapy responses, suggesting that its modulation may strengthen immunotherapeutic efficacy.
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