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:Interferon-elicited lipoprotein metabolism in lung fibroblasts facilitates premetastatic niche formation.
Interferon-elicited lipoprotein metabolism in lung fibroblasts facilitates premetastatic niche formation.
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虽然已知转移前微环境形成会影响原发肿瘤的肺转移,但肺基质细胞在这一过程中的作用仍不清楚。在此,我们通过多组学测序,鉴定出干扰素调控的 CD34+ 成纤维细胞,其通过 VLDLR 介导的脂蛋白代谢激活重塑免疫抑制性肺微环境。脂蛋白摄取增加促进细胞内脂质积累,随后成纤维细胞表达 CD155。CD155+ 成纤维细胞强烈诱导细胞毒性 CD8+ T 细胞和 NK 细胞耗竭,导致转移前微环境形成。在多种肿瘤模型中,遗传性破坏干扰素-VLDLR-CD155 轴可强效恢复免疫监视并抑制肺转移。
值得注意的是,通过特异性沉默成纤维细胞中的干扰素反应或阻断 CD155,可增强基于干扰素的治疗效力。此外,FTO-YTHDF2 介导的 STAT1 m6A 修饰导致干扰素反应的差异。
总之,我们的研究结果揭示了干扰素诱导的成纤维细胞代谢重编程如何通过 CD155 介导的免疫逃逸促进转移能力,提示了治疗肺转移的基质靶向策略。
While premetastatic niche formation is known to affect primary tumors lung metastases, the role of lung stromal cells in this process remains unclear.
Here, by performing multiomics sequencing, we identify interferon-regulated CD34 + fibroblasts that reshape the immunosuppressive lung microenvironment via VLDLR-mediated lipoprotein metabolism activation. Increased lipoprotein uptake facilitates intracellular lipid accumulation, followed by CD155 expression in fibroblasts.
CD155 + fibroblasts strongly induce cytotoxic CD8 + T and NK cell exhaustion, resulting in the formation of a premetastatic niche. The genetic disruption of the interferon-VLDLR-CD155 axis robustly reinstates immune surveillance and suppresses lung metastasis in multiple tumor models.
Notably, interferon-based therapy is potentiated by specific silencing of the interferon response in fibroblasts or CD155 blockade.
Moreover, the FTO-YTHDF2-mediated STAT1 m 6 A modification results in differences in the interferon response. Collectively, our findings reveal how interferon-induced metabolic rewiring in fibroblasts promotes metastatic competence via CD155-mediated immune evasion, suggesting stromal-targeted strategies for treating lung metastasis.
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