CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:The cell cycle regulator p16 promotes tumor infiltrated CD8(+) T cell exhaustion and apoptosis.
The cell cycle regulator p16 promotes tumor infiltrated CD8(+) T cell exhaustion and apoptosis.
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过继性T细胞疗法的治疗效果在很大程度上受到CD8+ T细胞活力降低和功能失调的限制。持续的抗原刺激破坏了CD8+ T细胞的扩增、效应功能和代谢适应性,导致其在肿瘤微环境(TME)中分化为耗竭状态。虽然细胞周期负调控因子p16在衰老细胞中的功能已被充分了解,但其在T细胞耗竭中的作用仍不清楚。
在本研究中,我们证明TCR刺激CD8+ T细胞可迅速上调p16表达,其水平与TCR亲和力呈正相关。慢性TCR刺激进一步增加p16表达,导致CD8+ T细胞凋亡和耗竭分化,而不诱导DNA损伤或细胞衰老。机制研究表明,p16下调mTOR、糖酵解和氧化磷酸化(OXPHOS)相关基因表达,导致线粒体适应性受损、T细胞活力降低和效应功能减弱。
此外,p16的缺失显著增强了CD8+ T细胞在肿瘤内的持久性,并抑制了肿瘤浸润T细胞的终末耗竭。总体而言,我们的发现阐明了p16表达增加如何重塑T细胞胞内代谢、驱动T细胞凋亡和耗竭分化,并最终损害T细胞抗肿瘤功能。
The therapeutic efficacy of adoptive T cell therapy is largely restricted by reduced viability and dysfunction of CD8 + T cells. Continuous antigen stimulation disrupts the expansion, effector function, and metabolic fitness of CD8 + T cells, leading to their differentiation into an exhausted state within the tumor microenvironment (TME). While the function of the cell cycle negative regulator p16 in senescent cells is well understood, its role in T cell exhaustion remains unclear.
In this study, we demonstrated that TCR stimulation of CD8 + T cells rapidly upregulates p16 expression, with its levels positively correlating with TCR affinity. Chronic TCR stimulation further increased p16 expression, leading to CD8 + T cell apoptosis and exhaustion differentiation, without inducing DNA damage or cell senescence.
Mechanistic investigations revealed that p16 downregulates mTOR, glycolysis, and oxidative phosphorylation (OXPHOS) associated gene expression, resulting in impaired mitochondrial fitness, reduced T cell viability, and diminished effector function.
Furthermore, the deletion of p16 significantly enhances the persistence of CD8 + T cells within tumors and suppresses the terminal exhaustion of tumor-infiltrating T cells.
Overall, our findings elucidate how increased p16 expression reshapes T cell intracellular metabolism, drives T cell apoptosis and exhaustion differentiation, and ultimately impairs T cell anti-tumor function.
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