MEK inhibition prevents CAR-T cell exhaustion and differentiation via downregulation of c-Fos and JunB

IF 40.8 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Xiujian Wang, Xiao Tao, Pengjie Chen, Penglei Jiang, Wenxiao Li, Hefeng Chang, Cong Wei, Xinyi Lai, Hao Zhang, Yihan Pan, Lijuan Ding, Zuyu Liang, Jiazhen Cui, Mi Shao, Xinyi Teng, Tianning Gu, Jieping Wei, Delin Kong, Xiaohui Si, Yingli Han, Huarui Fu, Yu Lin, Jian Yu, Xia Li, Dongrui Wang, Yongxian Hu, Pengxu Qian, He Huang
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Abstract

Clinical evidence supports the notion that T cell exhaustion and terminal differentiation pose challenges to the persistence and effectiveness of chimeric antigen receptor-T (CAR-T) cells. MEK1/2 inhibitors (MEKIs), widely used in cancer treatment due to their ability to inhibit aberrant MAPK signaling, have shown potential synergistic effects when combined with immunotherapy. However, the impact and mechanisms of MEKIs on CAR-T cells remain uncertain and controversial. To address this, we conducted a comprehensive investigation to determine whether MEKIs enhance or impair the efficacy of CAR-T cells. Our findings revealed that MEKIs attenuated CAR-T cell exhaustion and terminal differentiation induced by tonic signaling and antigen stimulation, thereby improving CAR-T cell efficacy against hematological and solid tumors. Remarkably, these effects were independent of the specific scFvs and costimulatory domains utilized in CARs. Mechanistically, analysis of bulk and single-cell transcriptional profiles demonstrates that the effect of MEK inhibition was related to diminish anabolic metabolism and downregulation of c-Fos and JunB. Additionally, the overexpression of c-Fos or JunB in CAR-T cells counteracted the effects of MEK inhibition. Furthermore, our Cut-and-Tag assay revealed that MEK inhibition downregulated the JunB-driven gene profiles associated with exhaustion, differentiation, anergy, glycolysis, and apoptosis. In summary, our research unveil the critical role of the MAPK-c-Fos-JunB axis in driving CAR-T cell exhaustion and terminal differentiation. These mechanistic insights significantly broaden the potential application of MEKIs to enhance the effectiveness of CAR-T therapy.

Abstract Image

抑制 MEK 可通过下调 c-Fos 和 JunB 防止 CAR-T 细胞衰竭和分化
临床证据证明,T细胞衰竭和终末分化对嵌合抗原受体-T(CAR-T)细胞的持久性和有效性构成了挑战。MEK1/2抑制剂(MEKIs)因其抑制异常MAPK信号传导的能力而被广泛用于癌症治疗,在与免疫疗法结合使用时显示出潜在的协同效应。然而,MEKIs 对 CAR-T 细胞的影响和机制仍不确定且存在争议。为了解决这个问题,我们进行了一项全面调查,以确定 MEKIs 是否会增强或损害 CAR-T 细胞的疗效。我们的研究结果表明,MEKIs 可减轻补体信号传导和抗原刺激引起的 CAR-T 细胞衰竭和终末分化,从而提高 CAR-T 细胞对血液肿瘤和实体瘤的疗效。值得注意的是,这些效应与CAR中使用的特定scFvs和共刺激结构域无关。从机理上讲,对体细胞和单细胞转录谱的分析表明,MEK抑制的效果与同化代谢的降低以及c-Fos和JunB的下调有关。此外,CAR-T 细胞中 c-Fos 或 JunB 的过表达抵消了 MEK 抑制的效果。此外,我们的剪切-标记检测发现,MEK抑制下调了与衰竭、分化、贫血、糖酵解和凋亡相关的JunB驱动基因谱。总之,我们的研究揭示了 MAPK-c-Fos-JunB 轴在驱动 CAR-T 细胞衰竭和末期分化中的关键作用。这些机制方面的见解大大拓宽了 MEKIs 在提高 CAR-T 疗法有效性方面的潜在应用。
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来源期刊
Signal Transduction and Targeted Therapy
Signal Transduction and Targeted Therapy Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
44.50
自引率
1.50%
发文量
384
审稿时长
5 weeks
期刊介绍: Signal Transduction and Targeted Therapy is an open access journal that focuses on timely publication of cutting-edge discoveries and advancements in basic science and clinical research related to signal transduction and targeted therapy. Scope: The journal covers research on major human diseases, including, but not limited to: Cancer,Cardiovascular diseases,Autoimmune diseases,Nervous system diseases.
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