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:Antigen glycosylation regulates efficacy of CAR T cells targeting CD19.
Antigen glycosylation regulates efficacy of CAR T cells targeting CD19.
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靶向CD19的嵌合抗原受体(CAR)T细胞可治愈部分B细胞恶性肿瘤患者,但多数患者无法获得持久缓解。识别导致治疗失败的机制,对于扩大这一有前景平台的疗效至关重要。多项研究已证明,CD19基因和转录本破坏可导致初始应答后疾病复发;但报告的其他肿瘤内在CAR-T 治疗失败驱动因素很少。我们发现,高尔基体驻留的跨膜内切蛋白酶信号肽肽酶样蛋白3(SPPL3)在恶性B细胞中的表达,是CAR治疗耐药的强效调节因素。SPPL3缺失会导致CD19过度糖基化,这一改变直接抑制CAR-T 细胞效应功能并降低抗肿瘤细胞毒性。相反,SPPL3过表达会导致CD19蛋白丢失,同样使肿瘤产生耐药。在这一临床前模型中,研究结果揭示CD19翻译后修饰是CAR-T 治疗中抗原逃逸的一种机制。
While chimeric antigen receptor (CAR) T cells targeting CD19 can cure a subset of patients with B cell malignancies, most patients treated will not achieve durable remission. Identification of the mechanisms leading to failure is essential to broadening the efficacy of this promising platform. Several studies have demonstrated that disruption of CD19 genes and transcripts can lead to disease relapse after initial response; however, few other tumor-intrinsic drivers of CAR T cell failure have been reported.
Here we identify expression of the Golgi-resident intramembrane protease Signal peptide peptidase-like 3 (SPPL3) in malignant B cells as a potent regulator of resistance to CAR therapy. Loss of SPPL3 results in hyperglycosylation of CD19, an alteration that directly inhibits CAR T cell effector function and suppresses anti-tumor cytotoxicity.
Alternatively, over-expression of SPPL3 drives loss of CD19 protein, also enabling resistance. In this pre-clinical model these findings identify post-translational modification of CD19 as a mechanism of antigen escape from CAR T cell therapy.
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