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:P2X7 receptor activation impairs antitumour activity of natural killer cells.
P2X7 receptor activation impairs antitumour activity of natural killer cells.
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大量肿瘤内浸润的自然杀伤(NK)细胞与多种癌症类型中更好的生存率相关,构成对抗肿瘤的重要第一道防线。实体瘤核心的缺氧诱导细胞应激和ATP释放到细胞外空间,在那里触发肿瘤相关免疫细胞上的嘌呤能受体激活。本研究的目的是评估细胞外ATP激活嘌呤能受体P2X7是否在NK细胞抗肿瘤活性中发挥作用。实验方法:我们使用通过细胞外ATP经P2X7触发纯化的人NK细胞进行体外实验。通过NK细胞毒性试验研究了NK细胞对肿瘤靶细胞K562的杀伤活性。同样,我们设计了皮下实体瘤体内小鼠模型。关键结果:在本研究中,我们发现表达功能性质膜P2X7的人NK细胞在ATP处理后获得无反应状态,这损害了它们的抗肿瘤活性并减少了IFN-分泌。这种效应被特异性P2X7拮抗剂以及IL-2或IL-15预处理所逆转。此外,遗传性P2rx7敲低导致NK细胞对肿瘤大小的控制改善。另外,IL-2治疗恢复了NK细胞缩小肿瘤大小的能力。结论与意义:我们的结果表明,P2X7激活代表了NK细胞可能失去抗肿瘤效力的一种新机制,为生成缺乏P2X7但具有改善抗肿瘤能力的修饰NK细胞开辟了可能性。
BACKGROUND AND PURPOSE: A high number of intratumoural infiltrating natural killer (NK) cells is associated with better survival in several types of cancer, constituting an important first line of defence against tumours. Hypoxia in the core of solid tumours induces cellular stress and ATP release into the extracellular space where it triggers purinergic receptor activation on tumour-associated immune cells. The aim of this study was to assess whether activation of the purinergic receptor P2X7 by extracellular ATP plays a role in the NK cells antitumour activity.
EXPERIMENTAL APPROACH: We carried out in vitro experiments using purified human NK cells triggered through P2X7 by extracellular ATP. NK cell killing activity against the tumour target cells K562 was studied by means of NK cytotoxicity assays. Likewise, we designed a subcutaneous solid tumour in vivo mouse model.
KEY RESULTS: In this study we found that human NK cells, expressing a functional plasma membrane P2X7, acquired an anergic state after ATP treatment, which impaired their antitumour activity and decreased IFN- secretion. This effect was reversed by specific P2X7 antagonists and pretreatment with either IL-2 or IL-15.
Furthermore, genetic P2rx7 knockdown resulted in improved control of tumour size by NK cells.
In addition, IL-2 therapy restored the ability of NK cells to diminish the size of tumours. CONCLUSIONS AND IMPLICATIONS: Our results show that P2X7 activation represents a new mechanism whereby NK cells may lose antitumour effectiveness, opening the possibility of generating modified NK cells lacking P2X7 but with improved antitumour capacity.
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