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首页> 外文期刊>Oncoimmunology. >A genetic IFN/STAT1/FAS axis determines CD4 T stem cell memory levels and apoptosis in healthy controls and Adult T-cell Leukemia patients
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A genetic IFN/STAT1/FAS axis determines CD4 T stem cell memory levels and apoptosis in healthy controls and Adult T-cell Leukemia patients

机译:遗传IFN / Stat1 / Fas轴决定了健康对照和成人T细胞白血病患者的CD4 T干细胞记忆水平和凋亡

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摘要

Adult T-cell leukemia (ATL) is an aggressive, chemotherapy-resistant CD4+CD25+ leukemia caused by HTLV-1 infection, which usually develops in a minority of patients several decades after infection. IFN + AZT combination therapy has shown clinical benefit in ATL, although its mechanism of action remains unclear. We have previously shown that an IFN-responsive FAS promoter polymorphism in a STAT1 binding site (rsi800682) is associated to ATL susceptibility and survival. Recently, CD4 T stem cell memory (Tscm) Fashl cells have been identified as the hierarchical cellular apex of ATL, but a possible link between FAS, apoptosis, proliferation and IFN response in ATL has not been studied. In this study, we found significant ex vivo antiproliferative, antiviral and immunomodulatory effects of IFN-α treatment in short-term culture of primary mononuclear cells from ATL patients (n = 25). Bayesian Network analysis allowed us to integrate ex vivo IFN-α response with clinical, genetic and immunological data from ATL patients, thereby revealing a central role for FAS -670 polymorphism and apoptosis in the coordinated mechanism of action of IFN-α. FAS genotype-dependence of IFN-induced apoptosis was experimentally validated in an independent cohort of healthy controls (n = 20). The same FAS -670 polymorphism also determined CD4 TScm levels in a genome-wide twin study (p = 7x 10~", n = 460), confirming a genetic link between apoptosis and TScm levels. Transcriptomic analysis and cell type deconvolution confirmed the FAS genotype/TSCM link and IFN-α-induced downregulation of CD4 TSCM-specific genes in ATL patient cells. In conclusion, ex vivo IFN-α treatment exerts a pleiotropic effect on primary ATL cells, with a genetic IFN/STATI/Fas axis determining apoptosis vs. proliferation and underscoring the CD4 TScm model of ATL leukemogenesis.
机译:成人T细胞白血病(ATL)是一种侵略性的化疗抗性CD4 + CD25 +白血病,由HTLV-1感染引起,通常在感染后几十年患者在少数患者中发展。 IFN + AZT组合疗法在ATL中显示了临床益处,尽管其作用机制仍然不清楚。我们之前已经表明,Stat1结合位点(RSI800682)中的IFN响应性FAS启动子多态性与ATL易感性和存活相关。最近,已经鉴定了CD4 T干细胞内存(TSCM)FASHL细胞作为ATL的分层细胞顶点,但尚未研究ATL中的FAS,凋亡,增殖和IFN响应之间的可能链接。在这项研究中,我们发现IFN-α的IFN-α治疗的显着离体抗增殖,抗病毒和免疫调节效应来自ATL患者的主要单核细胞短期培养物(n = 25)。贝叶斯网络分析使我们能够通过来自ATL患者的临床,遗传和免疫数据整合exvivo IFN-α响应,从而揭示IFN-α的协调作用机制中FAS -670多态性和凋亡的核心作用。 FAS基因型 - IFN诱导的细胞凋亡的依赖性在独立的健康对照组(n = 20)中实验验证。相同的FAS -670多态性也确定了基因组的双床研究中的CD4 TSCM水平(P = 7×10〜“,n = 460),确认细胞凋亡和TSCM水平之间的遗传联系。转录组分析和细胞类型解卷路确认了FAS基因型/ TSCM链路和IFN-α-诱导的ATL患者细胞中CD4 TSCM特异性基因的下调。总之,前体内IFN-α治疗对初级ATL细胞施加了脂肪效应,具有遗传IFN / Stati / FAS轴线测定细胞凋亡与扩散和强调ATL白血病CD4 TSCM模型。

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