OVEREXPRESSION OF TUMORPROTECTIVE CLUSTERIN PREVENTS EXHAUSTION OF TRANSGENIC T CELLS

凝集素 T细胞 癌症研究 细胞毒性T细胞 细胞生物学 生物 抗原 T细胞受体 免疫系统 嵌合抗原受体 抗原提呈细胞 细胞 白细胞介素21 化学 过继性细胞移植 白细胞介素2受体 分子生物学 转基因小鼠 转基因 受体 CD8型 细胞凋亡 CD28 ZAP70型 癌细胞 白细胞介素12 肿瘤微环境 细胞培养 免疫学 细胞生长 T淋巴细胞
作者
Constantin Segner,Yue Z. Huang,Elena Sotillo,Alisa Kolesnikova,Mansour Poorebrahim,Julia Höbart,Michael M. Lizardo,Julia Mergner,Fares Burwag,Miriam Schulz,Busheng Xue,Andrew I. Minchinton,Christian Brückner,Alissia Fernandes Madeira,Julia Hauer,Crystal L. Mackall,Jürgen Ruland,Poul H. Sorensen,Stefan Burdach
出处
期刊: [Cold Spring Harbor Laboratory]
标识
DOI:10.64898/2025.12.16.694090
摘要

1 Abstract T cell therapies, such as chimeric antigen receptor (CAR) T cells and T cell receptor (TCR) transgenic (tg) T cells, are a promising approach in the treatment of solid malignancies but are limited by T cell exhaustion caused by chronic antigen stimulation. Clusterin (CLU) is a chaperone protein known to protect both normal and malignant cells, from metabolic stress and reactive oxygen species (ROS). In this study, we investigated whether overexpression (OE) of CLU in TCRtg T cells and CAR-T cells respectively can reduce exhaustion induced by chronic antigen stimulation and enhance T cell functionality against Ewing sarcoma (EwS). Among other cytoprotective genes, we found that CLU was significantly downregulated in dysfunctional tumor infiltrating lymphocytes. Therefore, we engineered EwS-directed TCRtg T cells targeting a Chondromodulin-1 (Chm1)-derived peptide and GD2 CAR-T cells to overexpress CLU. We show here that CLU is downregulated in T cells following activation by tumor cells. CLU-overexpressing T cells exhibit decreased expression of exhaustion markers (PD1, LAG3) and reduced apoptosis after repetitive stimulation. These cells demonstrated improved infiltration into tumor spheroids and maintained functionality under hypoxic conditions. In vivo , CLU-overexpressing T cells showed enhanced persistence and a trend towards reduced tumor growth. Mechanistically, proteomic analysis suggested that reduced ribosomal activity might delay T cell exhaustion, implicating metabolic reprogramming. In conclusion, CLU OE in tg T cells enhances their persistence and functionality by mitigating exhaustion, possibly through modulation of ribosomal activity and metabolic pathways. This strategy holds potential for improving adoptive T cell therapies against solid tumors.
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