重编程
转录组
癌症研究
免疫疗法
生物
免疫系统
膀胱癌
基因剔除小鼠
条件基因敲除
代谢组学
计算生物学
基因表达谱
细胞
细胞生物学
人性化鼠标
免疫检查点
疾病
靶向治疗
癌症
肿瘤微环境
脂质代谢
生物途径
转录因子
癌细胞
基因表达调控
免疫学
作者
F. F. Ye,Xuedan Han,Wenrui Li,Lei Huang,Z Chen,Yu Lu,Hang Huang,Haowen Jiang,Lufeng Zheng
标识
DOI:10.1073/pnas.2505125123
摘要
Bladder cancer remains a significant therapeutic challenge due to its marked heterogeneity and capacity for immune evasion. Here, we employ spatial metabolomics and spatial transcriptomics to systematically characterize and visualize the metabolic and transcriptional landscapes of bladder cancer. Our findings identify distinct metabolic and transcriptional profiles across different tumor regions, highlighting heterogeneity and immune-associated metabolic reprogramming in BLCA. Further investigation identifies zinc finger protein 36 (ZFP36) as a potential immunotherapeutic target. Utilizing Zfp36 whole-body knockout and T cell–specific Zfp36 conditional knockout mice, we validated that Zfp36 knockout decreases the activation threshold for T cells and increases T cell infiltration in tumors. Moreover, we found that elevated ZFP36 expression is dramatically linked to worse patient outcomes. Mechanistically, ZFP36 facilitates mRNA degradation of key immune regulators, including C1QBP , thereby inhibiting T cell activation and cytotoxicity. Notably, combining Zfp36 knockout with anti-PD-1 therapy produced synergistic antitumor effects, suggesting that ZFP36 inhibition could be a promising therapeutic strategy. This integrated multiomics approach collectively uncovers immune-metabolic regulatory pathways in BLCA and points to critical molecular targets for immunotherapy.
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