研究概要
我们的结果表明,LCL161对仅暴露于抗原的TAC T细胞提供共刺激,然而,当面对骨髓瘤细胞时,LCL161并未增强TAC T细胞的抗肿瘤功能,这可能是因为T细胞对Fas介导的凋亡敏感性增加而受到限制。
研究思路结论见上方概要
背景
SMAC 模拟药物的诞生基于这样一个观察:许多癌症通过扩增 IAP 蛋白来促进其生存,因此去除这些通路将使细胞对凋亡重新敏感。越来越清楚的是,SMAC 模拟药物还以调节方式与免疫系统相互作用。SMAC 模拟药物对 IAP 功能的抑制激活了非经典 NF-κB 通路,该通路可以增强 T 细胞功能,这为使用 SMAC 模拟药物增强免疫治疗开辟了可能性。
方法
我们研究了SMAC模拟物LCL161,它能促进cIAP-1和cIAP-2的降解,作为向工程化的BMCA特异性人类TAC T细胞提供短暂共刺激的药剂。在此过程中,我们也试图了解LCL161对T细胞生物学的细胞和分子效应。
结果
LCL161激活了非经典NF-κB通路,并增强了抗原驱动的TAC T细胞增殖和存活。对经LCL161处理的TAC T细胞进行转录谱分析,揭示了共刺激和凋亡相关蛋白的差异表达,即CD30和FAIM3。我们假设LCL161对这些基因的调控可能影响该药物对T细胞的作用。我们通过基因工程逆转了这些差异表达,并观察到LCL161的共刺激作用受损,尤其是当CD30被删除时。虽然LCL161在TAC T细胞暴露于分离抗原后可提供共刺激信号,但当TAC T细胞受到表达靶抗原的骨髓瘤细胞刺激时,我们未观察到类似的模式。我们质疑骨髓瘤细胞表达FasL是否可能拮抗LCL161的共刺激作用。在LCL161存在的情况下,Fas-KO TAC T细胞在抗原刺激后表现出更优的扩增,提示Fas相关的T细胞死亡在LCL161存在时限制了T细胞对抗原应答的幅度。
展开英文摘要原文
BACKGROUND: The genesis of SMAC mimetic drugs is founded on the observation that many cancers amplify IAP proteins to facilitate their survival, and therefore removal of these pathways would re-sensitize the cells towards apoptosis. It has become increasingly clear that SMAC mimetics also interface with the immune system in a modulatory manner. Suppression of IAP function by SMAC mimetics activates the non-canonical NF-κB pathway which can augment T cell function, opening the possibility of using SMAC mimetics to enhance immunotherapeutics.
METHODS: We have investigated the SMAC mimetic LCL161, which promotes degradation of cIAP-1 and cIAP-2, as an agent for delivering transient costimulation to engineered BMCA-specific human TAC T cells. In doing so we also sought to understand the cellular and molecular effects of LCL161 on T cell biology.
RESULTS: LCL161 activated the non-canonical NF-κB pathway and enhanced antigen-driven TAC T cell proliferation and survival. Transcriptional profiling from TAC T cells treated with LCL161 revealed differential expression of costimulatory and apoptosis-related proteins, namely CD30 and FAIM3. We hypothesized that regulation of these genes by LCL161 may influence the drug's effects on T cells. We reversed the differential expression through genetic engineering and observed impaired costimulation by LCL161, particularly when CD30 was deleted. While LCL161 can provide a costimulatory signal to TAC T cells following exposure to isolated antigen, we did not observe a similar pattern when TAC T cells were stimulated with myeloma cells expressing the target antigen. We questioned whether FasL expression by myeloma cells may antagonize the costimulatory effects of LCL161. Fas-KO TAC T cells displayed superior expansion following antigen stimulation in the presence of LCL161, suggesting a role for Fas-related T cell death in limiting the magnitude of the T cell response to antigen in the presence of LCL161.
CONCLUSIONS: Our results demonstrate that LCL161 provides costimulation to TAC T cells exposed to antigen alone, however LCL161 did not enhance TAC T cell anti-tumor function when challenged with myeloma cells and may be limited due to sensitization of T cells towards Fas-mediated apoptosis.
论文信息
- 作者
- Afsahi A、Silvestri CM、Moore AE、Graham CF、Bacchiochi K、St-Jean M、Baker CL、Korneluk RG
- 单位
- Centre for Discovery in Cancer Research, McMaster University, Hamilton, ON, Canada.Canada
- 文献类型
- 非美国政府资助研究
- 期刊
- Frontiers in immunology2023