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:BBOX1 Is a Metabolic Checkpoint That Mediates Metastatic Cancer Cell Evasion from Immunosurveillance by NK Cells.
BBOX1 Is a Metabolic Checkpoint That Mediates Metastatic Cancer Cell Evasion from Immunosurveillance by NK Cells.
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未经标记:原发肿瘤不断向循环中释放癌细胞,但其中只有一小部分能够形成转移性肿瘤。成功的转移定植和生长似乎取决于癌细胞内部的代谢变化。在本研究中,我们利用聚焦代谢的 CRISPR 筛选在自发转移模型中,发现多种癌种中肿瘤细胞亚群表达酶 γ-丁基甜菜碱羟化酶 1(BBOX1)可使肿瘤细胞实现免疫逃逸。BBOX1 产生的代谢物肉碱抑制 NK 细胞中的小 GTP 酶 RhoA,阻止免疫突触形成,从而保护转移细胞。肿瘤细胞中 BBOX1 缺失可促进其在体外被 NK 细胞破坏,并提高体内 NK 细胞过继转移治疗的疗效。这些发现阐明了 BBOX1 阳性肿瘤细胞如何劫持肉碱生成以在转移过程中逃避免疫监视,并提出 BBOX1 作为抗转移策略的潜在代谢检查点。意义:BBOX1 生成的肉碱通过抑制 NK 细胞免疫突触形成和细胞毒性,使转移细胞实现免疫逃逸,提供了转移中可靶向的代谢脆弱性,并重新将肉碱定义为一种免疫抑制性代谢物。
UNLABELLED: Primary tumors constantly shed cancer cells into the circulation, yet only a fraction of these cells manage to give rise to metastatic tumors. Successful metastatic seeding and growth seem to depend on metabolic changes within cancer cells. In this study, using a metabolism-focused CRISPR screen in a spontaneous metastasis model, we found that the expression of the enzyme -butyrobetaine hydroxylase 1 (BBOX1) in a subpopulation of tumor cells in various carcinomas enables immune evasion.
The metabolite carnitine produced by BBOX1 inhibited the small GTPase RhoA in NK cells, preventing immunologic synapse formation and thereby protecting metastatic cells. Loss of BBOX1 in tumor cells promoted their destruction by NK cells in vitro and improved the efficacy of NK cell adoptive transfer therapy in vivo.
These findings illustrate how BBOX1-positive tumor cells hijack carnitine production to evade immunosurveillance during metastasis and propose BBOX1 as a potential metabolic checkpoint for antimetastatic strategies. SIGNIFICANCE: BBOX1-generated carnitine enables metastatic cell immune evasion by suppressing NK cell immunological synapse formation and cytotoxicity, providing a targetable metabolic vulnerability in metastasis and redefining carnitine as an immunosuppressive metabolite.
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