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首页> 外文期刊>Cell death & disease. >CBAP promotes thymocyte negative selection by facilitating T-cell receptor proximal signaling
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CBAP promotes thymocyte negative selection by facilitating T-cell receptor proximal signaling

机译:CBAP通过促进T细胞受体近端信号传导促进胸腺细胞阴性选择

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T-cell receptor (TCR)-transduced signaling is critical to thymocyte development at the CD4/CD8 double-positive stage, but the molecules involved in this process are not yet fully characterized. We previously demonstrated that GM-CSF/IL-3/IL-5 receptor common β -chain-associated protein (CBAP) modulates ZAP70-mediated T-cell migration and adhesion. On the basis of the high expression of CBAP during thymocyte development, we investigated the function of CBAP in thymocyte development using a CBAP knockout mouse. CBAP-deficient mice showed normal early thymocyte development and positive selection. In contrast, several negative selection models (including TCR transgene, superantigen staphylococcal enterotoxin B, and anti-CD3 antibody treatment) revealed an attenuation of TCR-induced thymocyte deletion in CBAP knockout mice. This phenotype correlated with a reduced accumulation of BIM upon TCR crosslinking in CBAP-deficient thymocytes. Loss of CBAP led to reduced TCR-induced phosphorylation of proteins involved in both proximal and distal signaling events, including ZAP70, LAT, PLC γ 1, and JNK1/2. Moreover, TCR-induced association of LAT signalosome components was reduced in CBAP-deficient thymocytes. Our data demonstrate that CBAP is a novel component in the TCR signaling pathway and modulates thymocyte apoptosis during negative selection.
机译:T细胞受体(TCR)传导的信号对于CD4 / CD8双重阳性阶段的胸腺细胞发育至关重要,但是尚未完全表征参与此过程的分子。我们先前证明了GM-CSF / IL-3 / IL-5受体共同的β链相关蛋白(CBAP)调节ZAP70介导的T细胞迁移和粘附。基于胸腺细胞发育过程中CBAP的高表达,我们使用CBAP基因敲除小鼠研究了CBAP在胸腺细胞发育中的功能。 CBAP缺陷小鼠表现出正常的早期胸腺细胞发育和阳性选择。相比之下,几种阴性选择模型(包括TCR转基因,超抗原葡萄球菌肠毒素B和抗CD3抗体处理)揭示了CBAP基因敲除小鼠中TCR诱导的胸腺细胞缺失的减弱。这种表型与CBAP缺陷胸腺细胞中TCR交联时BIM的积累减少有关。 CBAP的丧失导致TCR诱导的参与近端和远端信号传递事件的蛋白质的磷酸化降低,包括ZAP70,LAT,PLCγ1和JNK1 / 2。此外,在CBAP缺乏的胸腺细胞中,TCR诱导的LAT信号体组分的缔合减少。我们的数据表明,CBAP是TCR信号通路中的一种新型成分,可在阴性选择过程中调节胸腺细胞凋亡。

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