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Quantifying signaling-induced reorientation of T cell receptors during immunological synapse formation

机译:量化免疫突触形成过程中T细胞受体的信号传导诱导的重新定向

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摘要

Productive T cell recognition of antigen-presenting cells (APCs) is normally accompanied by the formation of a cell–cell contact called the “immunological synapse.” Our understanding of the steps leading up to this formation has been limited by the absence of tools for analyzing 3D surfaces and surface distributions as they change over time. Here we use a 3D fluorescence quantitation method to show that T cell receptors are recruited in bulk within the first minute after the onset of activation and with velocities ranging from 0.04 to 0.1 μm/s; a speed significantly greater than unrestricted diffusion. Our method reveals a second feature of this reorientation: a conformational change as the T cell pushes more total membrane into the interface creating a larger contact area for additional receptors. Analysis of individual T cell receptor velocities using a single-particle tracking method confirms our velocity measurement. This method should permit the quantitation of other dynamic membrane events and the associated movement of cell-surface molecules.
机译:抗原呈递细胞(APC)的有效T细胞识别通常伴随着称为“免疫突触”的细胞间接触的形成。由于缺少随时间变化的3D表面和表面分布分析工具,因此我们对导致形成的步骤的理解受到限制。在这里,我们使用3D荧光定量方法来显示T细胞受体在激活发生后的第一分钟内大量募集,并且速度范围为0.04至0.1μm/ s;速度明显大于无限制的扩散。我们的方法揭示了这种重新定向的第二个特征:当T细胞将更多的总膜推入界面时,构象改变,从而为其他受体形成更大的接触面积。使用单粒子跟踪方法对单个T细胞受体速度的分析证实了我们的速度测量结果。此方法应允许定量其他动态膜事件和细胞表面分子的相关运动。

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