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:NKG2A-HLA-E and TIM3-galectin 9 pathways promote immune inhibition and represent therapeutic vulnerabilities in pancreatic ductal adenocarcinoma.
NKG2A-HLA-E and TIM3-galectin 9 pathways promote immune inhibition and represent therapeutic vulnerabilities in pancreatic ductal adenocarcinoma.
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本研究确定了 NKG2A-HLA-E 和 TIM3-galectin 9 通路是 PDAC 进展和免疫抑制的关键机制,并为将其阻断与 PD-1-PD-L1 阻断联合作为潜在治疗策略提供了机制依据。
NKG2A-HLA-E和TIM3-galectin 9免疫检查点通路在胰腺导管腺癌(PDAC)进展中的作用仍未完全明确。本研究探讨它们对PDAC的贡献及治疗潜力。
通过生物信息学、免疫组织化学和流式细胞术分析了配体HLA-E和galectin 9以及受体NKG2A和TIM3的表达。通过Transwell、伤口愈合和CCK-8实验评估了HLA-E和galectin 9过表达对胰腺上皮细胞的影响。通过多重免疫荧光、单细胞RNA测序和功能实验检测了配体-受体相互作用及其对淋巴细胞功能的影响。
与正常组织和良性病变相比,PDAC癌症组织中配体HLA-E和galectin 9的表达升高。HLA-E的过表达增强了胰腺上皮细胞的迁移和侵袭能力。此外,HLA-E和galectin 9的高表达与PDAC患者更差的总生存期相关。在机制上,肿瘤间质和实质中NKG2A表达的增加与肿瘤浸润性T细胞和NK细胞功能受损相关。空间分析进一步揭示了NKG2A⁺ T细胞与高表达HLA-E的肿瘤区域共定位,表明存在一个活跃且局部的免疫抑制回路。单细胞图谱分析显示,NKG2A⁺和TIM3⁺肿瘤浸润性T细胞表现出耗竭特征,尤其是在共表达PD-1时。重要的是,NKG2A或TIM3与PD-1的双重阻断增强了CD8⁺和CD4⁺ T细胞的抗肿瘤反应,这一作用由SHP-1抑制和ERK激活所介导。
The roles of NKG2A-HLA-E and TIM3-galectin 9 immune checkpoint pathways in pancreatic ductal adenocarcinoma (PDAC) progression remain incompletely characterized. This study investigates their contributions to PDAC and therapeutic potential.
The expressions of ligands HLA-E and galectin 9 and receptors NKG2A and TIM3 were analyzed through bioinformatics, immunohistochemistry, and flow cytometry. Effects of HLA-E and galectin 9 overexpression on pancreatic epithelial cells were assessed by Transwell, wound healing, and CCK-8 assays. Ligand-receptor interactions and their impact on lymphocyte function were examined by multiplex immunofluorescence, single-cell RNA-sequencing, and functional assays.
The expression of ligands HLA-E and galectin 9 was elevated in PDAC cancer tissues compared with both normal tissues and benign lesions. The overexpression of HLA-E enhanced the migratory and invasive ability of pancreatic epithelial cells. Moreover, the high expression of HLA-E and galectin 9 correlated with worse overall survival in PDAC patients. Mechanistically, increased NKG2A expression in both tumor stroma and parenchyma was associated with impaired function of tumor-infiltrating T cells and NK cells. Spatial analyses further revealed colocalization of NKG2A⁺ T cells with high HLA-E-expressing tumor regions, indicating an active and localized immunosuppressive circuit. Single-cell profiling showed that NKG2A⁺ and TIM3⁺ tumor-infiltrating T cells exhibited exhausted signatures, particularly when co-expressing PD-1. Importantly, dual blockade of NKG2A or TIM3 with PD-1 enhanced the anti-tumor response of CD8⁺ and CD4⁺ T cells, mediated by SHP-1 inhibition and ERK activation.
This study identifies NKG2A-HLA-E and TIM3-galectin 9 pathways as key mechanisms in PDAC progression and immune inhibition and provides a mechanistic rationale for combining their blockade with PD-1-PD-L1 blockade as a potential therapeutic strategy.
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