首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Vav1-phospholipase C-γ1 (Vav1-PLC-γ1) Pathway Initiated by T Cell Antigen Receptor (TCRγδ) Activation Is Required to Overcome Inhibition by Ubiquitin Ligase Cbl-b during γδT Cell Cytotoxicity
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Vav1-phospholipase C-γ1 (Vav1-PLC-γ1) Pathway Initiated by T Cell Antigen Receptor (TCRγδ) Activation Is Required to Overcome Inhibition by Ubiquitin Ligase Cbl-b during γδT Cell Cytotoxicity

机译:T细胞抗原受体(TCRγδ)激活引发的Vav1-磷脂酶C-γ1(Vav1-PLC-γ1)通路需要克服泛素连接酶Cbl-b对γδT细胞细胞毒性的抑制作用

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摘要

T cell antigen receptor γδ (TCRγδ) and natural killer group 2, member D (NKG2D) are two crucial receptors for γδT cell cytotoxicity. Compelling evidences suggest that γδT cell cytotoxicity is TCRγδ-dependent and can be co-stimulated by NKG2D. However, the molecular mechanism of underlying TCRγδ-dependent activation of γδT cells remains unclear. In this study we demonstrated that TCRγδ but not NKG2D engagement induced lytic granule polarization and promoted γδT cell cytotoxicity. TCRγδ activation alone was sufficient to trigger Vav1-dependent phospholipase C-γ1 signaling, resulting in lytic granule polarization and effective killing, whereas NKG2D engagement alone failed to trigger cytotoxicity-related signaling to overcome the inhibitory effect of Cbl-b; therefore, NKG2D engagement alone could not induce effective killing. However, NKG2D ligation augmented the activation of γδT cell cytotoxicity through the Vav1-phospholipase C-γ1 pathway. Vav1 overexpression or Cbl-b knockdown not only enhanced TCRγδ activation-initiated killing but also enabled NKG2D activation alone to induce γδT cell cytotoxicity. Taken together, our results suggest that the activation of γδT cell cytotoxicity requires a strong activation signal to overcome the inhibitory effect of Cbl-b. Our finding provides new insights into the molecular mechanisms underlying the initiation of γδT cell cytotoxicity and likely implications for optimizing γδT cell-based cancer immunotherapy.
机译:T细胞抗原受体γδ(TCRγδ)和自然杀手2组成员D(NKG2D)是γδT细胞细胞毒性的两个关键受体。有力的证据表明,γδT细胞的细胞毒性是TCRγδ依赖性的,可以被NKG2D共同刺激。然而,潜在的TCRγδ依赖性γδT细胞活化的分子机制仍不清楚。在这项研究中,我们证明了TCRγδ而非NKG2D参与诱导了溶菌颗粒极化并促进了γδT细胞的细胞毒性。单独的TCRγδ激活足以触发Vav1依赖性磷脂酶C-γ1信号传导,导致溶解性颗粒极化和有效杀伤,而单独的NKG2D参与则无法触发细胞毒性相关的信号传导来克服Cbl-b的抑制作用。因此,仅NKG2D参与并不能诱导有效杀伤。但是,NKG2D连接通过Vav1-磷脂酶C-γ1途径增强了γδT细胞的细胞毒性。 Vav1的过表达或Cbl-b敲低不仅增强了TCRγδ激活引发的杀伤作用,而且还使NKG2D激活能够单独诱导γδT细胞的细胞毒性。两者合计,我们的结果表明,γδT细胞细胞毒性的激活需要强大的激活信号来克服Cbl-b的抑制作用。我们的发现为启动γδT细胞细胞毒性的分子机制提供了新见解,并可能为优化基于γδT细胞的癌症免疫疗法带来影响。

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