效应器
运动性
细胞生物学
线粒体
生物
过继性细胞移植
白细胞介素2受体
化学
T细胞
细胞
细胞骨架
细胞毒性T细胞
癌细胞
免疫疗法
癌症研究
癌症免疫疗法
作者
Maureen Hoen,Fahiima Abdullahi,Jay Walters,Hiten N. Patel,Dominik Stich,Isabelle J. Marié,Haitao Wen,David E. Levy,Jeffrey G. Jacot,Jordan Jacobelli,Felipe Valença-Pereira,Mercedes Rincón
标识
DOI:10.1158/2326-6066.cir-26-0401
摘要
Cell motility, characterized by random walk and exploratory search movement, enables effector CD8+ T cells to search for sparse antigen-specific cancer targets within a tumor. This is of special relevance for treatment of solid cancers with adoptive T-cell receptor (TCR) T-cell therapy, where administered effector CD8+ T cells recognize specific MHC-I-presented antigens. Cell motility requires cytoskeleton remodeling to facilitate shape changes and movement. Herein, we show that increased mitochondrial Ca2+ levels are essential to reduce cytoskeleton stiffness of effector CD8+ T cells, leading to acquisition of a polarized shape and high motility. IL-21, but not IL-7 or IL-15, was able to raise mitochondrial Ca2+ levels in effector CD8+ T cells and increase their motility without affecting survival and proliferation. This increase in mitochondrial Ca2+ levels triggered by IL-21 was driven by sustaining mitochondrial membrane potential through mitochondrial STAT3, independently of its transcriptional activity. Enhanced motility of effector CD8+ T cells led to a superior killing efficacy of antigen-specific melanoma cells in vitro. Furthermore, enhanced mitochondrial Ca2+-mediated motility of adoptive TCR-specific effector CD8+ T cells resulted in a superior antitumor efficacy of this treatment against solid tumors in vivo. Thus, enhancing effector CD8+ T-cell motility is a promising strategy to boost efficacy of adoptive T-cell therapies against solid tumors.
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