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:CD160 dictates anti-PD-1 immunotherapy resistance by regulating CD8(+) T cell exhaustion in colorectal cancer.
CD160 dictates anti-PD-1 immunotherapy resistance by regulating CD8(+) T cell exhaustion in colorectal cancer.
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结肠比回肠更易发生肿瘤。然而,免疫微环境差异在驱动这一差异中的作用仍不清楚。在此,通过比较结直肠癌(CRC)患者和健康供体的配对回肠和结肠样本,我们鉴定出回肠富集的CD160 + CD8 + T细胞,其具有此前未被认识的特征,包括抵抗终末耗竭和强烈的克隆扩增。CD160 + CD8 + T细胞的转移在微卫星高度不稳定和炎症诱导的CRC模型中显著抑制肿瘤生长。Cd160敲除加速肿瘤生长,而转移CD160 + CD8 + T细胞可减轻这一效应。
值得注意的是,在微卫星高度不稳定和抗PD-1耐药的CRC模型中,CD160 + CD8 + T细胞通过增加肿瘤浸润的祖细胞耗竭T细胞,提高抗PD-1疗效并克服其耐药性,几乎根除肿瘤。在机制上,我们揭示了一种CD160-PI3K(p85α)相互作用,其通过AKT-NF-κB通路促进FcεR1γ和4-1BB表达,从而增强CD8 + T细胞细胞毒性。
我们的研究揭示CD160是CD8 + T细胞功能的关键调节因子,并提出了一种转移CD160 + CD8 + T细胞以克服抗PD-1耐药性的创新免疫治疗策略。
The colon exhibits higher propensity for tumour development than ileum.
However, the role of immune microenvironment differences in driving this disparity remains unclear.
Here, by comparing paired ileum and colon samples from patients with colorectal cancer (CRC) and healthy donors, we identified ileum-enriched CD160 + CD8 + T cells with previously unrecognized characteristics, including resistance to terminal exhaustion and strong clonal expansion. The transfer of CD160 + CD8 + T cells significantly inhibits tumour growth in microsatellite instability-high and inflammation-induced CRC models. Cd160 knockout accelerates tumour growth, which is mitigated by transferring CD160 + CD8 + T cells.
Notably, in microsatellite instability-high and anti-PD-1-resistant CRC models, CD160 + CD8 + T cells improve anti-PD-1 efficacy and overcome its resistance by increasing tumour-infiltrating progenitor-exhausted T cells, nearly eradicating tumours.
Mechanistically, we uncover a CD160-PI3K (p85α) interaction that promotes FcεR1γ and 4-1BB expression via the AKT-NF-κB pathway, thereby enhancing CD8 + T cell cytotoxicity.
Our study reveals CD160 as a crucial regulator of CD8 + T cell function and proposes an innovative immunotherapy strategy of transferring CD160 + CD8 + T cells to overcome anti-PD-1 resistance.
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