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:Porphyromonas gingivalis fuels colorectal cancer through CHI3L1-mediated iNKT cell-driven immune evasion.
Porphyromonas gingivalis fuels colorectal cancer through CHI3L1-mediated iNKT cell-driven immune evasion.
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肠道微生物群与恒定自然杀伤T(iNKT)细胞之间的相互作用在结直肠癌(CRC)中发挥关键作用。致病共生菌具核梭杆菌影响CRC浸润性iNKT细胞的抗肿瘤功能。然而,其他与CRC相关的细菌,如牙龈卟啉单胞菌,对其激活状态的影响尚未被探索。在本研究中,我们证明黏膜相关的牙龈卟啉单胞菌诱导iNKT细胞的促肿瘤表型,随后影响肿瘤微环境中单核吞噬细胞群体的组成。在机制上,体内和体外实验表明,牙龈卟啉单胞菌通过增加几丁质酶3样蛋白1(CHI3L1)的表达,降低iNKT细胞的细胞毒性功能,损害iNKT细胞的裂解机制。中和CHI3L1有效恢复iNKT细胞的细胞毒性功能,提示重新激活iNKT细胞介导的抗肿瘤免疫的治疗潜力。总之,我们的数据证明牙龈卟啉单胞菌如何通过诱导iNKT细胞中CHI3L1的上调来加速CRC进展,从而损害其细胞毒性功能并促进宿主肿瘤免疫逃逸。
The interaction between the gut microbiota and invariant Natural Killer T (iNKT) cells plays a pivotal role in colorectal cancer (CRC). The pathobiont Fusobacterium nucleatum influences the anti-tumor functions of CRC-infiltrating iNKT cells.
However, the impact of other bacteria associated with CRC, like Porphyromonas gingivalis , on their activation status remains unexplored. In this study, we demonstrate that mucosa-associated P. gingivalis induces a protumour phenotype in iNKT cells, subsequently influencing the composition of mononuclear-phagocyte cells within the tumor microenvironment.
Mechanistically, in vivo and in vitro experiments showed that P. gingivalis reduces the cytotoxic functions of iNKT cells, hampering the iNKT cell lytic machinery through increased expression of chitinase 3-like-1 protein (CHI3L1). Neutralization of CHI3L1 effectively restores iNKT cell cytotoxic functions suggesting a therapeutic potential to reactivate iNKT cell-mediated antitumour immunity.
In conclusion, our data demonstrate how P. gingivalis accelerates CRC progression by inducing the upregulation of CHI3L1 in iNKT cells, thus impairing their cytotoxic functions and promoting host tumor immune evasion.
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