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:Osteoclast-expanded supercharged NK cells perform superior antitumour effector functions.
Osteoclast-expanded supercharged NK cells perform superior antitumour effector functions.
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这些结果支持这种独特方法能产生用于临床的强效 NK 细胞,并阐明了与这一过程相关的分子机制。
自然杀伤(NK)细胞是最大的固有淋巴细胞亚群,具有强大的抗肿瘤和抗病毒功能。然而,由于缺乏可靠的方法来增强其抗肿瘤潜力,人类NK细胞的临床应用受到阻碍。我们展示了一种技术,即在益生菌存在下将人类NK细胞与破骨细胞共培养。这种方法显著增强了人类NK细胞的抗肿瘤细胞毒性和多功能性,从而产生了超级NK(sNK)细胞。方法与分析:我们通过细胞成像、流式细胞术分析、51-铬释放细胞毒性试验、ELISA、ELIspot、IsoPLexis单细胞分泌组分析、蛋白质组分析、RNA分析、western blot和酶动力学,探索了sNK细胞的蛋白质组学、转录组学和功能特征。
我们发现sNK细胞对分裂失能和肿瘤诱导的耗竭较不敏感。蛋白质组学分析显示,sNK细胞显著增加了其细胞运动和增殖。单细胞转录组揭示sNK细胞沿着独特的分化轨迹发展,并分别开启STAT1、JUN、BHLHE40、ELF1、MAX和MYC调控子,这些对于增强抗肿瘤效应功能和增殖至关重要。蛋白质组学和单细胞转录组均显示,Cathepsin C的增加有助于增强Granzyme B的数量和功能。
Natural killer (NK) cells are the largest innate lymphocyte subset with potent antitumour and antiviral functions. However, clinical utilisation of human NK cells is hampered due to a lack of reliable methods to augment their antitumour potential. We demonstrated technology in which human NK cells were cocultured with osteoclasts in the presence of probiotic bacteria. This approach significantly augmented the antitumour cytotoxicity and polyfunctionality of human NK cells, resulting in the generation of supercharged NK (sNK) cells. METHODS AND ANALYSIS: We explored the proteomic, transcriptomic and functional characterisation of sNK cells using cell imaging, flow cytometric analysis, 51-chromium release cytotoxicity assay, ELISA, ELIspot, IsoPLexis single-cell secretome analysis, proteomic analysis, RNA analysis, western blot and enzyme kinetics.
We found that sNK cells were less susceptible to split anergy and tumour-induced exhaustion. Proteomic analyses revealed that sNK cells significantly increased their cell motility and proliferation. Single-cell transcriptomes uncovered sNK cells undertaking a unique differentiation trajectory and turning on STAT1, JUN, BHLHE40, ELF1, MAX and MYC regulons essential for augmenting antitumour effector functions and proliferation, respectively. Both proteomic and single-cell transcriptomes revealed that an increase in Cathepsin C helped to augment the quantity and function of Granzyme B.
These results support that this unique method produces potent NK cells for clinical utilisation and delineate the molecular mechanisms associated with this process.
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