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Osr2 作为生物力学检查点加剧肿瘤中 CD8⁺ T 细胞耗竭

英文原题:Osr2 functions as a biomechanical checkpoint to aggravate CD8(+) T cell exhaustion in tumor.

查看英文原题

Osr2 functions as a biomechanical checkpoint to aggravate CD8(+) T cell exhaustion in tumor.

PubMed 2024/05/13(内容时间) Cell Q1 · IF 45.1(JCR 2025)

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中文摘要

细胞外基质(ECM)结构和硬度改变是癌症的重要特征,但 ECM 生物力学特性是否影响肿瘤反应性 CD8+ T 细胞功能仍所知甚少。本研究揭示转录因子(TF)Osr2 可整合生物力学信号,并促进肿瘤反应性 CD8+ T 细胞终末耗竭。肿瘤特异性 CD8+ T 细胞亚群中的 Osr2 表达选择性诱导,机制涉及 T 细胞受体(TCR)信号与由 Piezo1/钙/CREB 轴介导的生物力学应激共同作用。相应地,敲除 Osr2 可减轻肿瘤特异性 CD8+ T 细胞或 CAR-T 的耗竭;而强制表达 Osr2 则会在实体瘤模型中加剧其耗竭。机制上,Osr2 招募 HDAC3,重塑表观遗传程序,抑制细胞毒性基因表达并促进 CD8+ T 细胞耗竭。因此,本研究揭示 Osr2 是加剧 CD8+ T 细胞耗竭的生物力学检查点,可作为增强癌症免疫治疗的靶点。

展开英文摘要原文

Alterations in extracellular matrix (ECM) architecture and stiffness represent hallmarks of cancer. Whether the biomechanical property of ECM impacts the functionality of tumor-reactive CD8 + T cells remains largely unknown.

Here, we reveal that the transcription factor (TF) Osr2 integrates biomechanical signaling and facilitates the terminal exhaustion of tumor-reactive CD8 + T cells. Osr2 expression is selectively induced in the terminally exhausted tumor-specific CD8 + T cell subset by coupled T cell receptor (TCR) signaling and biomechanical stress mediated by the Piezo1/calcium/CREB axis.

Consistently, depletion of Osr2 alleviates the exhaustion of tumor-specific CD8 + T cells or CAR-T cells, whereas forced Osr2 expression aggravates their exhaustion in solid tumor models.

Mechanistically, Osr2 recruits HDAC3 to rewire the epigenetic program for suppressing cytotoxic gene expression and promoting CD8 + T cell exhaustion.

Thus, our results unravel Osr2 functions as a biomechanical checkpoint to exacerbate CD8 + T cell exhaustion and could be targeted to potentiate cancer immunotherapy.

论文信息

作者
Zhang J、Li J、Hou Y、Lin Y、Zhao H、Shi Y、Chen K、Nian C
第一作者单位
State Key Laboratory of Cellular Stress Biology, Xiang'an Hospital, Innovation Center for Cell Signaling Network, School of Life Sciences, Xiamen University, Xiamen, Fujian 361102, China.China
通讯作者单位
State Key Laboratory of Cellular Stress Biology, Xiang'an Hospital, Innovation Center for Cell Signaling Network, School of Life Sciences, Xiamen University, Xiamen, Fujian 361102, China. Electronic address: dwzhou@xmu.edu.cn.China
期刊
Cell2024 Jun 20
原文标识
PubMed 38744281 · DOI 10.1016/j.cell.2024.04.023