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:RAC2 inhibition enhances tumor sensitivity to NK cell-mediated cytotoxicity.
RAC2 inhibition enhances tumor sensitivity to NK cell-mediated cytotoxicity.
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这些发现表明,抑制肿瘤细胞中的 RAC2 可显著增强其对 NK 细胞介导的细胞毒作用的敏感性,从而为优化 NK 细胞治疗提供了一个潜在的治疗靶点。
自然杀伤(NK)细胞能够杀伤肿瘤细胞并控制肿瘤,但肿瘤细胞常会产生抵抗,以逃避免受NK细胞介导的细胞毒作用。识别肿瘤细胞逃逸NK细胞杀伤的分子机制,可能为增强NK细胞癌症免疫治疗提供新策略。
采用体外肿瘤细胞与NK细胞共培养体系,鉴定肿瘤细胞与NK细胞相互作用后变化最显著的基因。通过流式细胞术定量NK细胞暴露后肿瘤细胞的死亡率。采用C57BL/6、BALB/c-nu和NOD/SCID小鼠的EL4及HCT116肿瘤模型,评估Rac2敲低或敲除引起的肿瘤生长差异。通过定量PCR、免疫荧光和突变分析,评估Rac2敲低或敲除对肿瘤细胞敏感性的细胞与分子影响。
筛查肿瘤细胞与NK细胞共培养后的Rho GTP酶家族基因表达发现,RAC2是该家族中调节肿瘤细胞抵抗NK细胞介导细胞毒作用的关键因子。此外,在异种移植瘤模型中,敲除人结直肠癌细胞的RAC2可提高肿瘤对NK细胞介导细胞毒作用的敏感性。机制上,RAC2缺失通过促进细胞间接触,增强肿瘤细胞对NK细胞杀伤的敏感性。
这些发现表明,抑制肿瘤细胞中的RAC2可显著提高其对NK细胞介导细胞毒作用的敏感性,因此RAC2可能是优化NK细胞治疗的潜在靶点。
Natural killer (NK) cells are recognized for their ability to kill tumor cells for tumor control, but tumor cells often develop resistance to evade NK cell-mediated cytotoxicity. Identification of molecular mechanisms by which tumor cells evade from NK cell-mediated killing may offer novel therapeutic strategies for potentiating NK-based cancer immunotherapy.
An in vitro tumor-NK cell co-culture system was employed to identify the most significantly altered genes in tumor cells following NK cell interaction. The cell death rate of tumor cells by NK cell exposure was quantified using flow cytometry. EL4 and HCT116 tumor models in C57BL/6, BALB/c-nu, and NOD/SCID mice were used for evaluating tumor growth differences induced by Rac2 knockdown or knockout. The cellular and molecular impact of Rac2 knockdown or knockout on the sensitivity of tumor cells to NK cell-mediated cytotoxicity was assessed using quantitative PCR, immunofluorescence, and mutation analysis.
By screening expression levels of the Ras homology (Rho) GTPase family genes in tumor cells after co-culture with NK cells, we identified RAC2 as a key regulator of tumor cell resistance to NK cell-mediated cytotoxicity among the Rho GTPase family members. Furthermore, knockout of RAC2 in human colorectal cancer cells leads to increased tumor susceptibility to NK cell-mediated cytotoxicity in a xenograft tumor model. Mechanistically, the absence of RAC2 enhances tumor cell sensitivity to NK cell-mediated killing by facilitating cell-cell contact.
These findings indicate that the inhibition of RAC2 in tumor cells substantially enhances their susceptibility to NK cell-mediated cytotoxicity, thereby providing a potential therapeutic target for optimizing NK cell therapy.
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