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Involvement of CD27/CD70 interactions in antigen-specific cytotoxic T-lymphocyte (CTL) activity by perforin-mediated cytotoxicity

机译:CD27 / CD70相互作用通过穿孔素介导的细胞毒性参与抗原特异性细胞毒性T淋巴细胞(CTL)活性

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摘要

CD27 molecules are shown to be essential in the regulation of the death, activation and differentiation of T and B cells. However, the influence of CD27 on cytotoxic T-cell function remains obscure. Autologous EBV transformed B-cell lines (LCL), which highly express CD27 ligand CD70, here stimulated T cells and induced the cytotoxic T-lymphocyte (CTL) activity via T-cell antigen receptors (TCR). The cytotoxicity against LCL was diminished when anti-CD70 blocking MoAb was added initially in the culture. Resting T cells killed more CD70-transfected P815 cells than wild type P815 cells in the presence of anti-CD3 MoAb as measured by a 4-h 51Cr release assay, and the cytotoxicity of both of the cell populations completely disappeared in the presence of concanamycin A (CMA). The expression of the perforin by the LCL-induced CTL in the presence of anti-CD70 blocking MoAb was diminished as compared with that without the blockage of CD27/CD70 interactions. The CTL induced by LCL did not kill Fas-transfected WR cells. CD27 signalling in the T cells did not affect Fas ligand (FasL) mRNA expression, LAK activity and IFN-γ synthesis in humans. Our data demonstrate that CD27/CD70 interactions enhance the cytotoxicity of CTL in the induction phase through enhancement of killing activity induced via the perforin-dependent mechanism, but not via the Fas/FasL system.
机译:已显示CD27分子在调节T细胞和B细胞的死亡,激活和分化中至关重要。但是,CD27对细胞毒性T细胞功能的影响仍然不清楚。高表达CD27配体CD70的自体EBV转化B细胞系(LCL)在此刺激T细胞并通过T细胞抗原受体(TCR)诱导细胞毒性T淋巴细胞(CTL)活性。当最初在培养物中添加抗CD70阻断性MoAb时,针对LCL的细胞毒性就降低了。在存在抗CD3 MoAb的情况下(通过4小时51Cr释放测定),静止的T细胞比野生型P815细胞杀死的CD70转染的P815细胞要多于野生型P815细胞,并且在伴刀豆球菌存在下,这两个细胞群的细胞毒性完全消失了A(CMA)。与不阻断CD27 / CD70相互作用的情况相比,在存在抗CD70阻断的MoAb的情况下,LCL诱导的CTL对穿孔素的表达减少了。 LCL诱导的CTL不会杀死Fas转染的WR细胞。 T细胞中的CD27信号传导不影响人类Fas配体(FasL)mRNA表达,LAK活性和IFN-γ合成。我们的数据表明,CD27 / CD70相互作用通过增强经由穿孔素依赖性机制而非Fas / FasL系统诱导的杀伤活性来增强诱导阶段CTL的细胞毒性。

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