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The T cell receptor triggering apparatus is composed of monovalent or monomeric proteins.

机译:T细胞受体触发装置由单价或单体蛋白组成。

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摘要

Understanding the component stoichiometry of the T cell antigen receptor (TCR) triggering apparatus is essential for building realistic models of signal initiation. Recent studies suggesting that the TCR and other signaling-associated proteins are preclustered on resting T cells relied on measurements of the behavior of membrane proteins at interfaces with functionalized glass surfaces. Using fluorescence recovery after photobleaching, we show that, compared with the apical surface, the mobility of TCRs is significantly reduced at Jurkat T cell/glass interfaces, in a signaling-sensitive manner. Using two biophysical approaches that mitigate these effects, bioluminescence resonance energy transfer and two-color coincidence detection microscopy, we show that, within the uncertainty of the methods, the membrane components of the TCR triggering apparatus, i.e. the TCR complex, MHC molecules, CD4/Lck and CD45, are exclusively monovalent or monomeric in human T cell lines, implying that TCR triggering depends only on the kinetics of TCR/pMHC interactions. These analyses also showed that constraining proteins to two dimensions at the cell surface greatly enhances random interactions versus those between the membrane and the cytoplasm. Simulations of TCR-pMHC complex formation based on these findings suggest how unclustered TCR triggering-associated proteins might nevertheless be capable of generating complex signaling outputs via the differential recruitment of cytosolic effectors to the cell membrane.
机译:了解T细胞抗原受体(TCR)触发装置的成分化学计量对于建立现实的信号启动模型至关重要。最近的研究表明,TCR和其他与信号传导相关的蛋白质是在静止的T细胞上预先聚簇的,这取决于对膜蛋白在功能化玻璃表面界面处的行为的测量。使用光漂白后的荧光恢复,我们显示,与顶表面相比,TCRs的迁移率在Jurkat T细胞/玻璃界面处以信号敏感方式显着降低。使用两种减轻这些影响的生物物理方法,生物发光共振能量转移和双色重合检测显微镜,我们表明,在方法的不确定性范围内,TCR触发装置的膜成分,即TCR复合物,MHC分子,CD4 / Lck和CD45在人T细胞系中仅是单价或单体,这意味着TCR触发仅取决于TCR / pMHC相互作用的动力学。这些分析还表明,与细胞膜和细胞质之间的相互作用相比,在细胞表面将蛋白限制在二维范围内可以大大增强随机相互作用。基于这些发现的TCR-pMHC复合物形成的模拟表明,未聚簇的TCR触发相关蛋白可能如何能够通过胞质效应子向细胞膜的不同募集而产生复杂的信号输出。

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