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:E-cadherin expression promotes tumor growth via KLRG1-dependent pathways.
E-cadherin expression promotes tumor growth via KLRG1-dependent pathways.
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转化细胞常通过调节 PD-1 和 CTLA-4 配体的表达来适应免疫压力。尽管针对这些相互作用的疗法取得了成功,但只有少数患者出现临床缓解,这凸显了对替代靶点的迫切需求。
我们课题组此前的工作表明,抑制性受体 KLRG1 与肿瘤来源的 E-cadherin 结合。然而,靶向 KLRG1 信号通路的治疗潜力仍未完全明确。为解决这一问题,我们构建了一个工程化表达不同水平 E-cadherin 的癌细胞系文库。在多个模型中,我们证明 E-cadherin 表达使肿瘤在体内更具侵袭性。利用一种携带突变 E-cadherin 的 RMA-S 细胞系——该突变消除了 KLRG1 结合,同时保留了 cadherin 同型相互作用——我们证明 E-cadherin 表达的促肿瘤效应在很大程度上由 KLRG1 介导。为进一步剖析 KLRG1 信号通路的细胞靶点,我们构建了 KLRG1fl/fl 小鼠并进行了谱系特异性缺失。出乎意料的是,我们发现 CD8+ T 细胞而非NK 细胞上的 KLRG1 表达损害了对 B16-F10 E-cadherin+ 肿瘤的免疫控制。
综上所述,这些结果揭示了 E-cadherin 一个未被充分认识的促肿瘤作用,并突出表明 KLRG1 是未来检查点阻断策略的一个有前景的靶点,尤其是在保留上皮特征的肿瘤中。
Transformed cells frequently adapt to immune pressure by modulating expression of ligands for PD-1 and CTLA-4. Despite the success of therapies targeting these interactions, only a minority of patients experience a clinical response, highlighting the critical need for alternative targets. Prior work from our group showed that the inhibitory receptor KLRG1 binds to tumor-derived E-cadherin.
However, the therapeutic potential of targeting KLRG1 signaling remains incompletely understood. To address this, we generated a library of cancer cell lines engineered to express varying levels of E-cadherin. Across multiple models, we demonstrate that E-cadherin expression renders tumors more aggressive in vivo. Using an RMA-S cell line possessing a mutated E-cadherin that abrogates KLRG1 binding while preserving cadherin homotypic interactions, we demonstrate that the protumor effect of E-cadherin expression is largely mediated by KLRG1.
To further dissect the cellular targets of KLRG1 signaling, we generated KLRG1fl/fl mice and performed lineage-specific deletion. Surprisingly, we discovered that KLRG1 expression on CD8+ T cells, rather than on natural killer cells, impairs the immune control of B16-F10 E-cadherin+ tumors. Taken together, these results reveal an underappreciated protumor role for E-cadherin and highlight KLRG1 as a promising target for future checkpoint blockade strategies, particularly in tumors retaining epithelial features.
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