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:Donor natural killer cells trigger production of β-2-microglobulin to enhance post-bone marrow transplant immunity.
Donor natural killer cells trigger production of β-2-microglobulin to enhance post-bone marrow transplant immunity.
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异基因造血移植是治疗血液系统恶性肿瘤的有力手段。移植后免疫无能使患者面临疾病复发和感染的风险。我们此前证明,供者同种反应性自然杀伤(NK)细胞可清除受者造血靶细胞,包括白血病。
在此,我们在小鼠模型中显示,输注供者同种反应性NK细胞可触发受者树突状细胞(DC)合成β-2-微球蛋白(B2M),后者引发c-KIT配体和白细胞介素-7的释放,从而大幅加速移植后免疫重建。输注同种反应性NK/DC共培养物的上清液可重现完全相同的系列事件。同样,人同种反应性NK细胞触发人DC合成B2M,后者诱导胸腺上皮细胞产生白细胞介素-7,从而在体外支持胸腺细胞数量。对小鼠和人同种反应性NK/DC共培养上清液进行层析分离,鉴定出一种分子量和等电点与B2M相符的蛋白质,质谱分析鉴定出B2M特异性氨基酸序列。用抗B2M抗体清除NK/DC共培养上清液中的B2M后,其免疫重建效应被消除。B2M基因敲除小鼠无法实现加速免疫重建,但输注(野生型)NK/DC共培养上清液恢复了其加速免疫重建的能力。同样,在与同种反应性NK细胞共培养之前沉默人DC中的B2M基因,可阻止体外胸腺细胞数量的增加。
最后,人重组B2M在胸腺上皮细胞/胸腺细胞培养系统中增加了胸腺细胞数量。我们的研究揭示了一种治疗移植后免疫无能的新治疗原则,并提示,在将其转化至临床后,患者可能受益于过继转移大量经细胞因子激活、体外扩增的供者同种异体反应性NK细胞。
Allogeneic hematopoietic transplantation is a powerful treatment for hematologic malignancies. Posttransplant immune incompetence exposes patients to disease relapse and infections.
We previously demonstrated that donor alloreactive natural killer (NK) cells ablate recipient hematopoietic targets, including leukemia.
Here, in murine models, we show that infusion of donor alloreactive NK cells triggers recipient dendritic cells (DCs) to synthesize β-2-microglobulin (B2M) that elicits the release of c-KIT ligand and interleukin-7 that greatly accelerate posttransplant immune reconstitution. An identical chain of events was reproduced by infusing supernatants of alloreactive NK/DC cocultures. Similarly, human alloreactive NK cells triggered human DCs to synthesize B2M that induced interleukin-7 production by thymic epithelial cells and thereby supported thymocyte cellularity in vitro.
Chromatography fractionation of murine and human alloreactive NK/DC coculture supernatants identified a protein with molecular weight and isoelectric point of B2M, and mass spectrometry identified amino acid sequences specific of B2M. Anti-B2M antibody depletion of NK/DC coculture supernatants abrogated their immune-rebuilding effect.
B2M knock-out mice were unable to undergo accelerated immune reconstitution, but infusion of (wild-type) NK/DC coculture supernatants restored their ability to undergo accelerated immune reconstitution. Similarly, silencing the B2M gene in human DCs, before coculture with alloreactive NK cells, prevented the increase in thymocyte cellularity in vitro.
Finally, human recombinant B2M increased thymocyte cellularity in a thymic epithelial cells/thymocyte culture system.
Our studies uncover a novel therapeutic principle for treating posttransplant immune incompetence and suggest that, upon its translation to the clinic, patients may benefit from adoptive transfer of large numbers of cytokine-activated, ex vivo-expanded donor alloreactive NK cells.
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