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:Down-regulation of MLLT1 super elongation complex subunit impairs the anti-tumor activity of natural killer cells in esophageal cancer.
Down-regulation of MLLT1 super elongation complex subunit impairs the anti-tumor activity of natural killer cells in esophageal cancer.
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自然杀伤(NK)细胞积极参与抗肿瘤免疫,因此被认为是食管癌(EC)免疫治疗中一种有前景的工具。然而,调控NK细胞活化和耗竭的机制尚未完全阐明。
在本研究中,我们在小鼠EC模型中表征了MLLT1超延伸复合体亚基(MLLT1)在食管NK细胞中的表达和功能。MLLT1在食管NK细胞中下调,尤其是在同时表达T细胞免疫球蛋白和黏蛋白结构域包含-3(TIM-3)以及淋巴细胞活化基因3(LAG-3)的NK细胞中。体外敲低NK细胞中的MLLT1导致IFN-γ和穿孔素表达显著降低,以及NK细胞对肿瘤细胞的细胞毒性受损。将MLLT1缺陷NK细胞过继转移至EC荷瘤小鼠后,NK细胞抗肿瘤活性表现出持续性损害,表现为IFN-γ和穿孔素降低,但颗粒酶B未降低。
此外,从EC荷瘤小鼠食管中富集的EC组织细胞诱导脾NK细胞中MLLT1下调。这种下调可被TIM-3阻断抗体部分恢复。因此,本研究表明TIM-3信号下调食管NK细胞中的MLLT1,而MLLT1下调削弱了NK细胞在EC中的杀肿瘤功能。
我们的研究揭示了EC微环境中NK细胞耗竭/功能障碍的一种新机制。MLLT1可能成为未来NK细胞介导的EC免疫治疗中的一个潜在靶点。
Natural killer (NK) cells actively participate in anti-tumor immunity and are thus regarded as a promising tool in immunotherapy against esophageal cancer (EC).
However, the mechanisms regulating NK cell activation and exhaustion have not been completely elucidated. In this study, we characterized the expression and function of MLLT1 super elongation complex subunit (MLLT1) in esophageal NK cells in a mouse EC model. MLLT1 was down-regulated in esophageal NK cells, especially NK cells expressing both T cell immunoglobulin and mucin-domain containing-3 (TIM-3) and lymphocyte activation gene3(LAG-3).
In vitro knockdown of MLLT1 in NK cells resulted in significant decreases in the expression of IFN-γ and perforin, as well as impaired NK cell cytotoxicity on tumor cells. Adoptive transfer of MLLT-deficient NK cells into EC-bearing mice showed consistent impairment of NK cell anti-tumor activity, as evidenced by decreases in IFN-γ and perforin but not granzyme B.
Furthermore, EC tissue cells, which were enriched from the esophagus of EC-bearing mice, induced down-regulation of MLLT1 in splenic NK cells. This down-regulation was partially restored by a TIM-3 blocking antibody.
Therefore, this study indicated that TIM-3 signaling down-regulated MLLT1 in esophageal NK cells, and MLLT1 down-regulation undermined the tumoricidal function of NK cells in EC.
Our study unveils a novel mechanism underlying NK cell exhaustion/dysfunction in the EC microenvironment. MLLT1 could be a potential target in future NK cell-mediated immunotherapy against EC.
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