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:EZH2 identifies the precursors of human natural killer cells with trained immunity.
EZH2 identifies the precursors of human natural killer cells with trained immunity.
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我们的工作揭示了人类 NK 细胞在训练免疫诱导中的异质性,确定了训练 NK 细胞的前体亚群,并证明了 EZH2 在人类 NK 细胞训练免疫诱导中的关键作用。
自然杀伤(NK)细胞的训练免疫在癌症治疗中显示出巨大潜力,其通过在预激活后长时间内对细胞因子或癌细胞的再刺激引发增强的效应应答。然而,负责训练免疫产生和维持的人类NK细胞在很大程度上仍不清楚。我们假设异质性人类NK细胞对IL-12、IL-15和IL-18联合刺激的反应存在差异,并且可能存在一个主要负责训练免疫诱导的NK细胞亚群。基于我们的假设,我们旨在鉴定细胞因子训练的人类NK细胞来源的亚群,并探索可能的药物干预调控靶点。
采用流式细胞术检测分析细胞因子训练的NK细胞功能,并检查NK细胞亚群的细胞分裂和蛋白表达。采用单细胞RNA测序(scRNA-seq)联合TotalSeq技术追踪训练免疫诱导过程中NK细胞的异质性。
外周NK细胞的传统发育标志物无法识别具有训练免疫的人NK细胞前体。因此,我们使用scRNA-seq联合TotalSeq技术追踪NK细胞在训练免疫诱导过程中的异质性,并鉴定出一个独特的CD57 - NKG2A + EZH2 + IFNG + MKI67 + IL12R + IL15R + IL18R + NK细胞群。富集和拟时序轨迹分析提示,该NK细胞群包含训练NK细胞的前体。随后我们使用流式细胞术进一步研究EZH2在训练NK前体中的作用,发现CD57 - NKG2A + EZH2 + NK细胞具有更快的细胞周期和增强的训练表型,而抑制EZH2显著损害了NK细胞中训练免疫的诱导。这些结果提示,EZH2是具有训练免疫的人NK细胞前体的一种独特表观遗传标志物。
Trained immunity of natural killer (NK) cells has shown great potential in the treatment of cancers by eliciting enhanced effector responses to restimulation by cytokines or cancer cells for long time periods after preactivation. However, the human NK cells responsible for the generation and maintenance of trained immunity are largely unknown. We hypothesized that heterogeneous human NK cells would respond differentially to stimulation with a combination of IL-12, IL-15, and IL-18, and that an NK cell subset might exist that is mainly responsible for the induction of trained immunity. On the basis of our hypothesis, we aimed to identify the subset from which cytokine-trained human NK cells originate and to explore possible regulatory targets for drug intervention.
Flow cytometry assays were performed to analyze the functions of cytokine-trained NK cells and examine cell division and protein expression in NK cell subsets. Single-cell RNA sequencing (scRNA-seq) plus TotalSeq technology was used to track the heterogeneity of NK cells during the induction of trained immunity.
Traditional developmental markers for peripheral NK cells were unable to identify the precursors of human NK cells with trained immunity. Therefore, we used scRNA-seq plus TotalSeq technology to track the heterogeneity of NK cells during the induction of trained immunity and identified a unique cluster of CD57 - NKG2A + EZH2 + IFNG + MKI67 + IL12R + IL15R + IL18R + NK cells. Enrichment and pseudotime trajectory analyses suggested that this cluster of NK cells contained the precursor of trained NK cells. We then used flow cytometry to further investigate the role of EZH2 in trained NK precursors and found that CD57 - NKG2A + EZH2 + NK cells had faster cell cycles and an enhanced trained phenotype, and EZH2 inhibition significantly impaired the induction of trained immunity in NK cells. These results suggested that EZH2 is a unique epigenetic marker of precursors of human NK cells with trained immunity.
Our work revealed human NK heterogeneity in the induction of trained immunity, identified the precursor subset for trained NK cells, and demonstrated the critical role of EZH2 in the induction of trained immunity in human NK cells.
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