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:NKG2A gene variant predicts outcome of immunotherapy in AML and modulates the repertoire and function of NK cells.
NKG2A gene variant predicts outcome of immunotherapy in AML and modulates the repertoire and function of NK cells.
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研究结果表明,NKG2A 基因的二态性与 NK 细胞效应功能增强以及 AML 中基于 IL-2 的免疫治疗疗效改善相关。
自然杀伤(NK)复合体(NKC)包含多个基因,如KLRC1(编码NKG2A)和KLRK1(编码NKG2D),这些基因对NK细胞功能的调控至关重要。我们旨在确定NKC单倍型在多大程度上影响NK细胞库和功能,以及这些基因变异是否影响急性髓系白血病(AML)中基于IL-2的免疫治疗结果。
NKG2D rs1049174和NKG2A rs1983526的基因型状态采用TaqMan等位基因判别法测定。为剖析单核苷酸多态性(SNP)对NK细胞功能的影响,我们利用CRISPR对K562细胞系进行工程化改造,使其以高度依赖NKG2D的方式被杀伤。采用流式细胞术检测NK细胞的脱颗粒、胞内细胞因子产生及细胞毒性。
在接受免疫治疗的AML患者中,NKG2A基因变异rs1983526与更优的无白血病生存期和总生存期相关。我们观察到,高细胞毒性NKG2D变异个体中更优的NK脱颗粒能力可由一个更大、高反应性的NKG2A+亚群的存在来解释。值得注意的是,当面对白血病细胞刺激时,携带编码NKG2A有利等位基因纯合子的供者NK细胞表现出更强的细胞因子反应,而具有该基因型的AML患者的NK细胞在盐酸组胺/IL-2免疫治疗期间显示更高的颗粒酶B积累。此外,在AML患者中,NKG2A SNP界定了一个HLA-B-21 TT且预后显著有利的患者亚群。
The natural killer (NK) complex (NKC) harbors multiple genes such as KLRC1 (encoding NKG2A) and KLRK1 (encoding NKG2D) that are central to regulation of NK cell function. We aimed at determining to what extent NKC haplotypes impact on NK cell repertoire and function, and whether such gene variants impact on outcome of IL-2-based immunotherapy in acute myeloid leukemia (AML).
Genotype status of NKG2D rs1049174 and NKG2A rs1983526 was determined using the TaqMan-Allelic discrimination approach. To dissect the impact of single nucloetide polymorphim (SNP) on NK cell function, we engineered the K562 cell line with CRISPR to be killed in a highly NKG2D-dependent fashion. NK cells were assayed for degranulation, intracellular cytokine production and cytotoxicity using flow cytometry.
In AML patients receiving immunotherapy, the NKG2A gene variant, rs1983526, was associated with superior leukemia-free survival and overall survival. We observed that superior NK degranulation from individuals with the high-cytotoxicity NKG2D variant was explained by presence of a larger, highly responsive NKG2A + subset. Notably, NK cells from donors homozygous for a favorable allele encoding NKG2A mounted stronger cytokine responses when challenged with leukemic cells, and NK cells from AML patients with this genotype displayed higher accumulation of granzyme B during histamine dihydrochloride/IL-2 immunotherapy. Additionally, among AML patients, the NKG2A SNP defined a subset of patients with HLA-B-21 TT with a strikingly favorable outcome.
The study results imply that a dimorphism in the NKG2A gene is associated with enhanced NK cell effector function and improved outcome of IL-2-based immunotherapy in AML.
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