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:Downregulation of AT-rich interaction domain 2 underlies natural killer cell dysfunction in oral squamous cell carcinoma.
Downregulation of AT-rich interaction domain 2 underlies natural killer cell dysfunction in oral squamous cell carcinoma.
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免疫系统在控制口腔鳞状细胞癌(OSCC)的发生和进展中发挥重要作用。自然杀伤(NK)细胞积极参与抗肿瘤免疫,但在肿瘤微环境中变得功能障碍或耗竭。为了探索OSCC中NK细胞功能障碍的机制,我们在小鼠OSCC模型中表征了NK细胞中AT丰富交互结构域2(ARID2)的表达和功能。与脾NK细胞相比,ARID2在舌NK细胞中下调。
值得注意的是,ARID2在具有耗竭表型和抗肿瘤功能减弱的NK细胞中显著降低。ARID2敲低导致NK细胞中程序性细胞死亡蛋白1(PD-1)上调以及干扰素-γ(IFN-γ)、肿瘤坏死因子(TNF)、颗粒酶B和穿孔素下调。
因此,ARID2敲低损害了NK细胞毒性。此外,ARID2过表达抑制了PD-1和淋巴细胞活化基因3的表达,并促进了过继转移至OSCC荷瘤小鼠的NK细胞中IFN-γ、TNF、颗粒酶B和穿孔素的表达。
综上所述,我们的研究表明OSCC微环境触发瘤内NK细胞中ARID2下调。反过来,ARID2下调导致NK细胞上PD-1上调,随后损害NK细胞毒性。因此,我们揭示了OSCC中NK细胞功能障碍的一种新机制。
The immune system plays a significant role in controlling oral squamous cell carcinoma (OSCC) initiation and progression. Natural killer (NK) cells actively participate in antitumor immunity but become dysfunctional or exhausted in the tumor microenvironment. To explore the mechanisms of NK cell dysfunction in OSCC, we characterized the expression and function of AT-rich interaction domain 2 (ARID2) in NK cells in a murine OSCC model. ARID2 was downregulated in tongue NK cells compared with splenic NK cells.
Notably, ARID2 was significantly decreased in NK cells with an exhausted phenotype and weakened antitumor function. ARID2 knockdown resulted in the upregulation of programmed cell death protein 1 (PD-1) and downregulation of interferon-gamma (IFN-γ), tumor necrosis factor (TNF), granzyme B and perforin in NK cells. As a result, ARID2 knockdown impaired NK cell cytotoxicity.
Besides, ARID2 overexpression suppressed the expression of PD-1 and lymphocyte-activation gene 3, and promoted the expression of IFN-γ, TNF, granzyme B and perforin in NK cells which were adoptively transferred into OSCC-bearing mice. Taken together, our study implies that the OSCC microenvironment triggers ARID2 downregulation in intratumoral NK cells. In turn, ARID2 downregulation results in PD-1 upregulation on NK cells and subsequently impairs NK cell cytotoxicity.
Therefore, we uncovered a novel mechanism of NK cell dysfunction in OSCC.
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