单细胞追踪揭示黑色素瘤 TIL 治疗过程中肿瘤反应性 T 细胞的可塑性
Single-cell tracking reveals tumor-reactive T cell plasticity during melanoma TIL therapy.
TIL(肿瘤浸润淋巴细胞)过继细胞治疗可在转移性黑色素瘤中诱导持久缓解,然而在体外扩增过程中及回输后,调控肿瘤反应性T细胞命运的克隆和转录动态仍知之甚少。
英文原题:TMED inhibition suppresses cell surface PD-1 expression and overcomes T cell dysfunction.
TMED inhibition suppresses cell surface PD-1 expression and overcomes T cell dysfunction.
我们的结果揭示了 PD-1 调控的一种新机制,并鉴定出一个在药理学上可干预的靶点,抑制该靶点可抑制 PD-1 丰度与 T 细胞功能障碍。
背景:阻断程序性细胞死亡蛋白1(PD-1)免疫检查点(ICB)正在改变癌症治疗,但调控CD8 T细胞上PD-1表达的机制知之甚少。由于T细胞活化过程中会诱导PD-1表达,我们旨在发现通过抑制即可降低PD-1丰度、且不损害T细胞活化的调控因子。 方法:为无偏倚地鉴定PD-1调控因子,我们在原代小鼠CD8 T细胞中开展全基因组、基于荧光激活细胞分选(FACS)的CRISPR-Cas9筛选。采用CD137活化标志物进行双读数检测,从而区分参与PD-1调控的基因和调节一般T细胞活化的基因。 结果:我们发现,失活TMED/EMP24/GP25L/p24转运蛋白家族中的若干成员(尤以TMED10为甚)可降低细胞表面PD-1丰度,进而增强T细胞活性。另一种相关货物蛋白为细胞毒性T淋巴细胞相关蛋白4(CTLA-4),其表达也会因TMED失活而降低。使用TMED抑制剂AGN192403处理,可使TMED-PD-1复合物发生溶酶体降解,并降低小鼠肿瘤浸润CD8 T细胞(TIL)中的PD-1丰度,从而逆转T细胞功能障碍。单细胞RNA分析从临床角度支持了这些发现:CD8 TIL中的TMED表达与T细胞功能障碍特征及缺乏ICB应答均呈正相关。同样,接受TMED高表达TIL产品的患者总生存期较短。 结论:我们的结果揭示了PD-1调控的新机制,并确定了一个可通过药物干预的靶点;抑制该靶点可降低PD-1丰度并改善T细胞功能障碍。
BACKGROUND: Blockade of the programmed cell death protein 1 (PD-1) immune checkpoint (ICB) is revolutionizing cancer therapy, but little is known about the mechanisms governing its expression on CD8 T cells. Because PD-1 is induced during activation of T cells, we set out to uncover regulators whose inhibition suppresses PD-1 abundance without adversely impacting on T cell activation. METHODS: To identify PD-1 regulators in an unbiased fashion, we performed a whole-genome, fluorescence-activated cell sorting (FACS)-based CRISPR-Cas9 screen in primary murine CD8 T cells. A dual-readout design using the activation marker CD137 allowed us to uncouple genes involved in PD-1 regulation from those governing general T cell activation. RESULTS: We found that the inactivation of one of several members of the TMED/EMP24/GP25L/p24 family of transport proteins, most prominently TMED10, reduced PD-1 cell surface abundance, thereby augmenting T cell activity. Another client protein was cytotoxic T lymphocyte-associated protein 4 (CTLA-4), which was also suppressed by TMED inactivation. Treatment with TMED inhibitor AGN192403 led to lysosomal degradation of the TMED-PD-1 complex and reduced PD-1 abundance in tumor-infiltrating CD8 T cells (TIL) in mice, thus reversing T cell dysfunction. Clinically corroborating these findings, single-cell RNA analyses revealed a positive correlation between TMED expression in CD8 TIL, and both a T cell dysfunction signature and lack of ICB response. Similarly, patients receiving a TIL product with high TMED expression had a shorter overall survival. CONCLUSION: Our results uncover a novel mechanism of PD-1 regulation, and identify a pharmacologically tractable target whose inhibition suppresses PD-1 abundance and T cell dysfunction.
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