RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Zinc finger protein 217 contributes to natural killer cell dysfunction in murine colorectal cancer.
Zinc finger protein 217 contributes to natural killer cell dysfunction in murine colorectal cancer.
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免疫细胞在结直肠癌(CRC)进展的监视和控制中发挥积极作用。自然杀伤(NK)细胞是强大的抗肿瘤效应细胞,但其在CRC组织中的调控机制尚未被充分阐明。
本研究利用小鼠炎症性结直肠癌模型,对NK细胞的表型和功能进行了表征。我们发现了CRC组织中NK细胞功能障碍的迹象,包括耗竭标志物上调、活化受体下调、脱颗粒和细胞因子表达缺陷以及细胞溶解效应减弱。有趣的是,转录抑制因子锌指蛋白217(ZNF217)在CRC相关NK细胞中显著上调。体外实验表明,ZNF217敲低促进了NK细胞的细胞溶解活性,提示ZNF217是NK细胞功能的抑制因子。过继转移实验表明,ZNF217敲低也导致NK细胞在体内功能增强,随后抑制了CRC的发展。
此外,缺氧而非耗竭上调了NK细胞中ZNF217的表达。ZNF217敲低促进了NK细胞对缺氧介导的NK细胞功能障碍的抵抗。
因此,我们发现了CRC发展过程中NK细胞功能障碍的一种新型调控因子。
Immune cells play active roles in the surveillance and control of colorectal cancer (CRC) progression. Natural killer (NK) cells are powerful anti-tumor effector cells but their regulatory mechanisms in the CRC tissues have not been thoroughly elucidated. In this research using a murine inflammatory colorectal cancer model, we characterized the phenotype and function of NK cells.
We found signs of NK cell dysfunction in CRC tissues, including up-regulation of exhaustion markers, down-regulation of activating receptors, deficiencies in degranulation and cytokine expression, and weak cytolytic effect. Interestingly, zinc finger protein 217 (ZNF217), a transcription repressor, was significantly up-regulated in CRC-associated NK cells.
In vitro assays revealed that ZNF217 knockdown promoted NK cell cytolytic activity, implying that ZNF217 is an inhibitory factor of NK cell function. Adoptive transfer assays indicated that ZNF217 knockdown also resulted in enhancement of NK cell function in vivo and subsequently suppressed CRC development.
Furthermore, hypoxia rather than exhaustion up-regulated ZNF217 expression in NK cells. ZNF217 knockdown promoted NK cell resistance to hypoxia-mediated NK cell dysfunction.
Therefore, we discovered a novel regulatory factor of NK cell dysfunction during CRC development.
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