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:Sirtuin 6 is a negative regulator of the anti-tumor function of natural killer cells in murine inflammatory colorectal cancer.
Sirtuin 6 is a negative regulator of the anti-tumor function of natural killer cells in murine inflammatory colorectal cancer.
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免疫系统在控制结直肠癌(CRC)发展中起着至关重要的作用。自然杀伤(NK)细胞具有杀肿瘤作用,但在CRC患者中会发生耗竭。
本研究旨在了解sirtuin 6(SIRT6)在小鼠炎症性结直肠癌模型中CRC相关NK细胞耗竭中的作用。为此,通过给小鼠施用氧化偶氮甲烷加葡聚糖硫酸钠诱导炎症性CRC。通过免疫印迹法表征小鼠肠系膜淋巴结(mLNs)和CRC组织中NK细胞SIRT6的表达。通过慢病毒转导小鼠脾NK细胞实现SIRT6敲低,随后使用流式细胞术评估NK细胞增殖和细胞毒性介质的表达。通过细胞毒性实验测量NK细胞细胞毒性。应用小鼠NK细胞过继转移以分析SIRT6敲低在体内的效果。
我们发现SIRT6在小鼠CRC组织浸润NK细胞中上调,尤其是在具有耗竭表型和细胞毒性受损的NK细胞中。SIRT6敲低显著增强了小鼠脾NK细胞功能,表现为增殖加速、细胞毒性介质产生增加以及体外和体内更高的杀肿瘤活性。
此外,将SIRT6敲低NK细胞过继转移到荷CRC小鼠中有效抑制了CRC进展。因此,SIRT6上调对于小鼠CRC中NK细胞耗竭至关重要,因为它阻碍了小鼠NK细胞的杀肿瘤活性。人工下调SIRT6可以增强浸润NK细胞的功能,从而抑制小鼠CRC进展。
The immune system plays a crucial role in controlling colorectal cancer (CRC) development. Natural killer (NK) cells are tumoricidal but undergo exhaustion in CRC patients. The current research aims to understand the role of sirtuin 6 (SIRT6) in CRC-associated NK cell exhaustion in a murine inflammatory colorectal cancer model. To this end, inflammatory CRC was induced by treating mice with azoxymethane plus dextran sulfate sodium.
The expression of SIRT6 in NK cells in murine mesenteric lymph nodes (mLNs) and the CRC tissue was characterized by Immunoblotting. SIRT6 knockdown was achieved by lentiviral transduction of murine splenic NK cells, followed by evaluation of NK cell proliferation and the expression of cytotoxic mediators using flow cytometry. NK cell cytotoxicity was measured by cytotoxicity assays. Adoptive transfer of murine NK cells was applied to analyze the effect of SIRT6 knockdown in vivo.
We found that SIRT6 was up-regulated in infiltrating NK cells in the murine CRC tissue, especially NK cells with an exhausted phenotype and impaired cytotoxicity. SIRT6 knockdown significantly boosted murine splenic NK cell functionality, as evidenced by accelerated proliferation, increased production of cytotoxic mediators, and higher tumoricidal activity both in vitro and in vivo.
Furthermore, the adoptive transfer of SIRT6-knockdown NK cells into CRC-bearing mice effectively suppressed CRC progression.
Therefore, SIRT6 up-regulation is essential for murine NK cell exhaustion in CRC because it impedes the tumoricidal activity of murine NK cells. Artificial SIRT6 down-regulation could boost the function of infiltrating NK cells to oppress CRC progression in mice.
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