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:DOCK2 Mutation and Recurrent Hemophagocytic Lymphohistiocytosis.
DOCK2 Mutation and Recurrent Hemophagocytic Lymphohistiocytosis.
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噬血细胞性淋巴组织细胞增多症(HLH)是一种由失控的过度炎症、免疫系统过度活化及炎症细胞因子水平升高导致的综合征。NK 细胞和 CD8 细胞毒性 T 细胞依赖穿孔素和颗粒酶 B 启动凋亡,从而下调活化巨噬细胞;这一过程受损可导致 HLH。该过程相关基因的纯合突变会引发原发性 HLH(pHLH),可导致多系统器官衰竭及婴儿期死亡。同一批基因的杂合、显性负性或单等位基因低功能突变,在免疫诱因存在时也可引起类似综合征,即继发性 HLH(sHLH)。一名患者因频繁中心静脉导管感染反复发生 sHLH 和过度炎症,研究者在其体内发现可能与 HLH 相关的新基因——胞质分裂专属因子 2(DOCK2)突变。为预防 sHLH,患者需接受基础免疫抑制治疗,并在病情发作或感染时增加抗细胞因子治疗和糖皮质激素。研究者采用泡沫病毒载体,分别将患者 DOCK2 突变和野生型(WT)对照 DOCK2 cDNA 转导至人 NK-92 细胞系。体外使用 NK 敏感的 K562 红白血病靶细胞刺激 NK 细胞,并分别通过 CD107a 表达和可活/死染料测量脱颗粒和细胞溶解。与 WT 相比,患者 DOCK2 突变显著降低 NK 细胞功能、脱颗粒和细胞毒性。
本研究说明 DOCK2 及相关基因在 sHLH 发病机制中的重要性,并对其诊断和治疗具有启示。
Hemophagocytic lymphohistiocytosis (HLH) is a syndrome resulting from uncontrolled hyper-inflammation, excessive immune system activation, and elevated levels of inflammatory cytokines. HLH can be caused by the inability to downregulate activated macrophages by natural killer (NK) and CD8 cytotoxic T cells through a process reliant on perforin and granzyme B to initiate apoptosis. Homozygous genetic mutations in this process result in primary HLH (pHLH), a disorder that can lead to multi-system organ failure and death in infancy. Heterozygous, dominant-negative, or monoallelic hypomorphic mutations in these same genes can cause a similar syndrome in the presence of an immune trigger, leading to secondary HLH (sHLH).
A genetic mutation in a potential novel HLH-associated gene, dedicator of cytokinesis 2 ( DOCK2) , was identified in a patient with recurrent episodes of sHLH and hyperinflammation in the setting of frequent central line infections. He required baseline immune suppression for the prevention of sHLH, with increased anti-cytokine therapies and corticosteroids in response to flares and infections.
Using a foamy-virus approach, the patient's DOCK2 mutation and wild-type (WT) control DOCK2 cDNA were separately transduced into a human NK-92 cell line. The NK-cell populations were stimulated with NK-sensitive K562 erythroleukemia target cells in vitro and degranulation and cytolysis were measured using CD107a expression and live/dead fixable cell dead reagent, respectively. Compared to WT, the patient's DOCK2 mutation was found to cause significantly decreased NK cell function, degranulation, and cytotoxicity.
This study speaks to the importance of DOCK2 and similar genes in the pathogenesis of sHLH, with implications for its diagnosis and treatment.
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