Wang Yuning, Zhao Guo, Wang Shuhang, Li Ning
Clinical Trial Center, National Cancer Center/National Clinical Research Center for Cancer/Cancer Hospital Chinese Academy of Medical Sciences and Peking Union Medical College Beijing China.
MedComm (2020). 2024 Apr 21;5(5):e552. doi: 10.1002/mco2.552. eCollection 2024 May.
SUV39H1 ablation in CAR-T cells epigenetically enhances the antitumor function (by Figdraw). (A) Schematic illustration of SUV39H1 ablation-mediated enhanced antitumor function of CAR-T cells. Functional CAR-T cells eventually transformed into dysfunctional exhausted CAR-T cells under the exposure of chronic tumor antigens, accompanied by reduced proliferation level, effector function, and stemness/memory characteristics, thereby limiting the antitumor activity so as to cause the recurrence of solid tumors. Upon genetic engineering of SUV39H1 ablation, SUV KO CAR-T cells are endowed with increased proliferation level and stemness/memory properties, accompanied by reduced effector/exhausted phenotype. Augmented SUV KO CAR-T cells after in vitro expansion intravenously infusion to mice achieved stronger and more persistent tumor rejection. (B) SUV39H1 ablation-mediated epigenetic reprogramming mechanism of CAR-T cells. Epigenetically, under the stimulation of chronic tumor antigens, exhausted CAR-T cells were characterized by downregulation of proliferation, effector and stemness/memory-associated genes and upregulation of exhaustion-associated genes. SUV39H1 genetic ablation increased chromatin accessibility of stemness/memory-associated genes and reduced chromatin accessibility of inhibitory receptors and effector-associated genes in SUV KO CAR-T cells, epigenetically reprogramming human T cells to express higher levels of stemness/memory genes such as KLF2, LEF1 and TCF7 and lower levels of effector/exhaustion genes.
CAR-T细胞中SUV39H1基因敲除可通过表观遗传学增强抗肿瘤功能(由Figdraw绘制)。(A)SUV39H1基因敲除介导的CAR-T细胞增强抗肿瘤功能示意图。在慢性肿瘤抗原暴露下,功能性CAR-T细胞最终会转变为功能失调的耗竭型CAR-T细胞,同时增殖水平、效应功能以及干性/记忆特性降低,从而限制了抗肿瘤活性,导致实体瘤复发。通过对SUV39H1进行基因工程敲除,SUV基因敲除的CAR-T细胞具有更高的增殖水平和干性/记忆特性,同时效应/耗竭表型降低。体外扩增后的增强型SUV基因敲除CAR-T细胞经静脉注射到小鼠体内后,实现了更强且更持久的肿瘤排斥反应。(B)SUV39H1基因敲除介导的CAR-T细胞表观遗传重编程机制。在表观遗传学上,在慢性肿瘤抗原刺激下,耗竭型CAR-T细胞的特征是增殖、效应以及干性/记忆相关基因下调,而耗竭相关基因上调。SUV39H1基因敲除增加了SUV基因敲除CAR-T细胞中干性/记忆相关基因的染色质可及性,并降低了抑制性受体和效应相关基因的染色质可及性,通过表观遗传重编程使人类T细胞表达更高水平的干性/记忆基因,如KLF2、LEF1和TCF7,以及更低水平的效应/耗竭基因。