CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Genome editing or small molecule inhibition of KMT5A in CAR-T cells enhances antitumor immunity.
Genome editing or small molecule inhibition of KMT5A in CAR-T cells enhances antitumor immunity.
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我们的发现确立了 KMT5A 是一种损害 CD8⁺T 细胞功能的表观遗传调控因子。
过继T细胞疗法已成为有前景的癌症治疗策略,但仍面临多项临床挑战,包括CD8+ T细胞难以浸润实体瘤并高效清除肿瘤细胞。鉴于表观遗传机制在抗肿瘤免疫中的关键作用,靶向表观遗传调节因子是优化实体瘤过继T细胞疗法的重要步骤。
为研究KMT5A在CD8+ T细胞功能中的作用,我们采用CRISPR筛选,将KMT5A鉴定为负调节因子。随后在人体CD8+ T细胞中敲除KMT5A,并在异种移植模型中系统评估其对嵌合抗原受体(CAR)T细胞抗肿瘤疗效的影响。此外,使用小分子抑制剂UNC0379药理性抑制KMT5A,细致评估其对CAR-T 细胞活化、细胞毒性和抗肿瘤活性的影响。
我们通过CRISPR筛选发现,赖氨酸甲基转移酶KMT5A是CD8+ T细胞功能的负调节因子。在人体CD8+ T细胞中敲除KMT5A,可显著增强异种移植模型中CAR CD8+ T细胞的抗肿瘤疗效。体外免疫表型分析显示,敲除KMT5A可增强CD8+ T细胞效应功能、细胞因子分泌和早期活化。从机制上看,KMT5A缺失提高了CD8+ T细胞中多种效应相关基因的表达及染色质可及性。KMT5A介导的组蛋白H4修饰和染色质重塑会抑制CD8+ T细胞效应功能,部分通过抑制转录因子SP1实现。值得注意的是,本研究新发现,药理性使用小分子抑制剂UNC0379抑制KMT5A,可增强人体CD8+ T细胞活化、细胞毒性及抗肿瘤活性。
研究结果确认KMT5A是一种损害CD8+ T细胞功能的表观遗传调节因子。在CD8+ T细胞中通过基因或药理学方法(如UNC0379)靶向KMT5A,是增强效应功能并改善实体瘤过继T细胞疗法,尤其是CAR-T 细胞疗法的可行策略。
Adoptive T-cell therapy has emerged as a promising therapeutic strategy for cancer treatment. However, clinical challenges persist, including the limited ability of CD8+T cells to infiltrate solid tumors and efficiently eliminate tumor cells. Given the critical role of epigenetic mechanisms in antitumor immunity, targeting epigenetic regulators represents a critical step toward optimizing adoptive T-cell therapies for solid tumors.
To investigate the role of KMT5A in CD8+T cell function, we employed CRISPR screening to identify KMT5A as a negative regulator. We then genetically deleted KMT5A in human CD8+T cells and systematically evaluated its impact on the antitumor efficacy of chimeric antigen receptor (CAR)-T cells using xenograft models. Furthermore, we used the small-molecule inhibitor UNC0379 to pharmacologically inhibit KMT5A, meticulously assessing the consequent effects on CAR-T cell activation, cytotoxicity, and antitumor activity.
We report that lysine methyltransferase KMT5A acts as a negative regulator of CD8+T cell function, identified via CRISPR screening. KMT5A deletion in human CD8+T cells significantly enhances the antitumor efficacy of CAR CD8+T cells in xenograft models. In vitro immunophenotyping reveals that KMT5A deletion improves effector functions, cytokine secretion, and early activation of CD8+T cells. Mechanistically, KMT5A depletion increases the expression and chromatin accessibility of multiple effector-related genes in CD8+T cells. KMT5A-mediated histone H4 modifications and chromatin remodeling suppress CD8+T cell effector functions, partially via inhibition of the transcription factor SP1 . Notably, pharmacological inhibition of KMT5A using the small-molecule inhibitor UNC0379 enhanced activation, cytotoxicity, and antitumor activity in human CD8+T cells-a novel finding in this study.
Our findings establish KMT5A as an epigenetic regulator that impairs CD8+T cell function. These findings demonstrate that genetic or pharmacological (eg, UNC0379) targeting of KMT5A in CD8+T cells represents a viable therapeutic strategy to augment effector functions and improve adoptive T-cell therapies, particularly CAR-T cells, for solid tumors.
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