首页> 外文期刊>Blood: The Journal of the American Society of Hematology >The co-receptor BTLA negatively regulates human Vγ9Vδ2 T-cell proliferation: a potential way of immune escape for lymphoma cells.
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The co-receptor BTLA negatively regulates human Vγ9Vδ2 T-cell proliferation: a potential way of immune escape for lymphoma cells.

机译:共同受体BTLA负调节人Vγ9Vδ2T细胞增殖:淋巴瘤细胞免疫逃逸的潜在方法。

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摘要

Vγ9Vδ2 cells, the major γδ T-cell subset in human peripheral blood, represent a T-cell subset that displays reactivity against microbial agents and tumors. The biology of Vγ9Vδ2 T cells remains poorly understood. We show herein that the interaction between B- and T-lymphocyte attenuator (BTLA) and herpesvirus entry mediator (HVEM) is a major regulator of Vγ9Vδ2 T-cell proliferation control. BTLA was strongly expressed at the surface of resting Vγ9Vδ2 T cells and inversely correlated with T-cell differentiation. BTLA-HVEM blockade by monoclonal antibodies resulted in the enhancement of Vγ9Vδ2 T-cell receptor-mediated signaling, whereas BTLA-HVEM interaction led to a decrease in phosphoantigen-mediated proliferation by inducing a partial S-phase arrest. Our data also suggested that BTLA-HVEM might participate in the control of γδ T-cell differentiation. In addition, the proliferation of autologous γδ T cells after exposition to lymphoma cells was dramatically reduced through BTLA-HVEM interaction. These data suggest that HVEM interaction with BTLA may play a role in lymphomagenesis by interfering with Vγ9Vδ2 T-cell proliferation. Moreover, BTLA stimulation of Vγ9Vδ2 T cells appears as a new possible mechanism of immune escape by lymphoma cells.
机译:Vγ9VΔ2细胞,人外周血中的主要γδT细胞亚集,代表了对微生物剂和肿瘤的反应性的T细胞子集。 Vγ9Vδ2T细胞的生物学仍然明白很差。我们展示了B-和T淋巴细胞衰减器(BTLA)和HERPESVIRUS进入介质(HVEM)之间的相互作用是Vγ9Vδ2T细胞增殖控制的主要调节剂。 BTLA在静止Vγ9Vδ2T细胞的表面上强烈表达并与T细胞分化逆为相关。通过单克隆抗体阻断BTLA-HVEM导致Vγ9VΔ2T细胞受体介导的信号传导的增强,而BTLA-HVEM相互作用通过诱导部分S阶段阻止导致磷酸酯介导的增殖降低。我们的数据还表明BTLA-HVEM可能参与控制γδT细胞分化的控制。此外,通过BTLA-HVEM相互作用显着降低了释放淋巴瘤细胞后的自体γδT细胞的增殖。这些数据表明,通过干扰Vγ9Vδ2T细胞增殖,HVEM与BTLA的相互作用可能在淋巴瘤中发挥作用。此外,Vγ9VΔ2T细胞的BTLA刺激作为淋巴瘤细胞的新可能的免疫逃逸机制。

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