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:L-kynurenine induces NK cell loss in gastric cancer microenvironment via promoting ferroptosis.
L-kynurenine induces NK cell loss in gastric cancer microenvironment via promoting ferroptosis.
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我们的研究揭示了一种新机制,用以解释胃癌肿瘤微环境中 NK 细胞数量的下降。
自然杀伤(NK)细胞在机体抗击多种癌症中发挥重要作用。据报道,胃癌(GC)肿瘤微环境(TME)中NK细胞浸润显著减少,是可靠的预后标志物。然而,导致GC肿瘤微环境中NK细胞减少的原因尚未充分阐明。
我们构建非接触式共培养系统和人源化异种移植肿瘤小鼠模型,通过流式细胞术检测GC微环境对NK-92或原代人NK细胞存活能力的影响。随后使用不同类型细胞死亡的特异性抑制剂并检测替代标志物,证实NK细胞发生铁死亡。基于意外发现,我们构建了GPX4高表达NK-92细胞株,并将该细胞用于治疗人源化异种移植肿瘤小鼠模型。
我们发现,主要由GC细胞通过吲哚胺2,3-双加氧酶(IDO)生成的L-KYN会损害TME中NK细胞的存活能力。进一步分析显示,L-KYN以非芳香烃受体(AHR)依赖的方式诱导NK细胞发生铁死亡。此外,GPX4表达较高的NK细胞能够抵抗L-KYN诱导的铁死亡。基于此,我们制备了GPX4过表达NK-92细胞,并发现其对GC具有治疗潜力。
本研究揭示了一种解释GC肿瘤微环境中NK细胞数量减少的新机制。值得注意的是,我们还开发了一种潜在免疫治疗策略,未来可能有益于临床治疗。
Natural killer (NK) cells play a major role in body's fighting against various types of cancers. Their infiltration in the tumor microenvironment (TME) of gastric cancer (GC) are significantly decreased, which has been reported as a robust prognostic marker. However, the causes leading to NK cells loss in GC TME remains poorly understood.
We constructed a non-contact co-culturing system and humanized xenograft tumor mice model to detect the influence of GC microenvironment on NK-92 or primary human NK cells viability by flow cytometry. Then through using the specific inhibitors for different types of cell death and examining the surrogate markers, we confirmed ferroptosis in NK cells. Inspired by the accidental discoveries, we constructed a NK-92 cell strain with high expression of GPX4 and treated the humanized xenograft tumor mice model with the NK-92 cells.
We found L-KYN, mainly generated through indoleamine 2, 3-dioxygenase (IDO) from GC cells, impaired NK cells viability in TME. Further analysis revealed L-KYN induced ferroptosis in NK cells via an AHR-independent way. Moreover, we found NK cells with higher GPX4 expression showed resistance to L-KYN induced ferroptosis. Based on this, we generated GPX4 over-expressed NK-92 cells, and found these cells showed therapeutic potential towards GC.
Our study revealed a novel mechanism to explain the decline of NK cell number in GC TME. Notably, we also developed a potential immunotherapy strategy, which might be beneficial in clinical treatment in the future.
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