首页> 外文期刊>The journal of immunology >Tumor-Infiltrating CD4+ T Lymphocytes Express APO2 Ligand (APO2L)/TRAIL upon Specific Stimulation with Autologous Lung Carcinoma Cells: Role of IFN-α on APO2L/TRAIL Expression and -Mediated Cytotoxicity
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Tumor-Infiltrating CD4+ T Lymphocytes Express APO2 Ligand (APO2L)/TRAIL upon Specific Stimulation with Autologous Lung Carcinoma Cells: Role of IFN-α on APO2L/TRAIL Expression and -Mediated Cytotoxicity

机译:肿瘤浸润的CD4 + T淋巴细胞在自体肺癌细胞特异性刺激下表达APO2配体(APO2L)/ TRAIL:IFN-α对APO2L / TRAIL表达和介导的细胞毒性的作用

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In the present report, we have investigated TRAIL/APO2 ligand (APO2L) expression, regulation, and function in human lung carcinoma tumor-infiltrating lymphocytes. Using a panel of non-small cell lung carcinoma cell lines, we first showed that most of them expressed TRAIL-R1/DR4, TRAIL-R2/DR5, but not TRAIL-R3/DcR1 and TRAIL-R4/DcR2, and were susceptible to APO2L/TRAIL-induced cell death. Two APO2L/TRAIL-sensitive tumor cell lines (MHC class I+/II+ or I+/II?) were selected and specific CD4+ HLA-DR- or CD8+ HLA-A2-restricted CTL clones were respectively isolated from autologous tumor-infiltrating lymphocytes. Interestingly, although the established T cell clones did not constitutively express detectable levels of APO2L/TRAIL, engagement of their TCR via activation with specific tumor cells selectively induced profound APO2L/TRAIL expression on the CD4+, but not on the CD8+, CTL clones. Furthermore, as opposed to the CD8+ CTL clone which mainly used granule exocytosis pathway, the CD4+ CTL clone lysed the specific target via both perforin/granzymes and APO2L/TRAIL-mediated mechanisms. The latter cytotoxicity correlated with APO2L/TRAIL expression and was significantly enhanced in the presence of IFN-α. More interestingly, in vivo studies performed in SCIDonobese diabetic mice transplanted with autologous tumor and transferred with the specific CD4+ CTL clone in combination with IFN-α resulted in an important APO2L/TRAIL-mediated tumor growth inhibition, which was prohibited by soluble TRAIL-R2. Our findings suggest that APO2L/TRAIL, specifically induced by autologous tumor and up-regulated by IFN-α, may be a key mediator of tumor-specific CD4+ CTL-mediated cell death and point to a potent role of this T cell subset in tumor growth control.
机译:在本报告中,我们研究了TRAIL / APO2配体(APO2L)在人肺癌肿瘤浸润淋巴细胞中的表达,调控和功能。使用一组非小细胞肺癌细胞系,我们首先显示它们大多数表达TRAIL-R1 / DR4,TRAIL-R2 / DR5,但不表达TRAIL-R3 / DcR1和TRAIL-R4 / DcR2,并且易感APO2L / TRAIL诱导的细胞死亡。选择两种对APO2L / TRAIL敏感的肿瘤细胞系(MHC I + / II +或I + /IIα),并从自体肿瘤浸润淋巴细胞中分别分离出特定的CD4 + HLA-DR-或CD8 + HLA-A2限制性CTL克隆。有趣的是,尽管已建立的T细胞克隆没有组成型表达可检测水平的APO2L / TRAIL,但通过活化与特定肿瘤细胞的接触,它们的TCR选择性地诱导了CD4 +而不是CD8 +,CTL克隆上APO2L / TRAIL的表达。此外,与主要使用颗粒胞吐途径的CD8 + CTL克隆相反,CD4 + CTL克隆通过穿孔素/颗粒酶和APO2L / TRAIL介导的机制裂解了特异性靶标。后者的细胞毒性与APO2L / TRAIL表达相关,并在存在IFN-α的情况下显着增强。更有趣的是,在SCID /非肥胖糖尿病小鼠体内进行的体内研究表明,该小鼠移植了自体肿瘤并转移了特定的CD4 + CTL克隆并与IFN-α结合,产生了重要的APO2L / TRAIL介导的肿瘤生长抑制作用,这被可溶性TRAIL所禁止-R2。我们的发现表明,APO2L / TRAIL由自体肿瘤特异性诱导并被IFN-α上调,可能是肿瘤特异性CD4 + CTL介导的细胞死亡的关键介质,并指出该T细胞亚群在肿瘤中的强大作用增长控制。

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