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:BCL11B depletion induces the development of highly cytotoxic innate T cells out of IL-15 stimulated peripheral blood αβ CD8+ T cells.
BCL11B depletion induces the development of highly cytotoxic innate T cells out of IL-15 stimulated peripheral blood αβ CD8+ T cells.
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BCL11B是胸腺细胞生成所必需的转录因子,也调节胸腺后淋巴细胞的重要过程。近期研究发现,BCL11B表达增加与NK细胞成熟相关,而在具有NK细胞特征的天然和诱导T细胞亚群中,BCL11B水平降低。我们发现,IL-15刺激后,BCL11B缺失的CD8+ T细胞获得显著的先天免疫特征。这些诱导型先天CD8+(iiT8)细胞表达多种先天免疫受体,如NKp30、CD161和CD16,也表达调节迁移和组织归巢的因子,同时保留T细胞表型。iiT8细胞能够自发杀伤白血病细胞,并在肿瘤特异性单克隆抗体存在时通过CD16受体活化杀伤神经母细胞瘤球体。这些iiT8细胞结合先天NK 细胞活性与适应性T细胞的持久性,具有有趣的治疗潜力。本研究表明,尽管先天T细胞频率较低、临床应用有限,但可从外周血高效制备并用于过继转移、CAR治疗,或与治疗性抗体联合应用。
BCL11B, an essential transcription factor for thymopoiesis, regulates also vital processes in post-thymic lymphocytes. Increased expression of BCL11B was recently correlated with the maturation of NK cells, whereas reduced BCL11B levels were observed in native and induced T cell subsets displaying NK cell features.
We show that BCL11B-depleted CD8+ T cells stimulated with IL-15 acquired remarkable innate characteristics. These induced innate CD8+ (iiT8) cells expressed multiple innate receptors like NKp30, CD161, and CD16 as well as factors regulating migration and tissue homing while maintaining their T cell phenotype.
The iiT8 cells effectively killed leukemic cells spontaneously and neuroblastoma spheroids in the presence of a tumor-specific monoclonal antibody mediated by CD16 receptor activation. These iiT8 cells integrate the innate natural killer cell activity with adaptive T cell longevity, promising an interesting therapeutic potential.
Our study demonstrates that innate T cells, albeit of limited clinical applicability given their low frequency, can be efficiently generated from peripheral blood and applied for adoptive transfer, CAR therapy, or combined with therapeutic antibodies.
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