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Monte Carlo Study of Single Molecule Diffusion Can Elucidate the Mechanism of B Cell Synapse Formation

机译:单个分子扩散的蒙特卡洛研究可以阐明B细胞突触形成的机制

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摘要

B cell receptors have been shown to cluster at the intercellular junction between a B cell and an antigen-presenting cell in the form of a segregated pattern of B cell receptor/antigen complexes known as an immunological synapse. We use random walk-based theoretical arguments and Monte Carlo simulations to study the effect of diffusion of surface-bound molecules on B cell synapse formation. Our results show that B cell synapse formation is optimal for a limited range of receptor-ligand complex diffusion coefficient values, typically one-to-two orders of magnitude lower than the diffusion coefficient of free receptors. Such lower mobility of receptor-ligand complexes can significantly affect the diffusion of a tagged receptor or ligand in an affinity dependent manner, as the binding/unbinding of such receptor or ligand molecules crucially depends on affinity. Our work shows how single molecule tracking experiments can be used to estimate the order of magnitude of the diffusion coefficient of receptor-ligand complexes, which is difficult to measure directly in experiments due to the finite lifetime of receptor-ligand bonds. We also show how such antigen movement data at the single molecule level can provide insight into the B cell synapse formation mechanism. Thus, our results can guide further single molecule tracking experiments to elucidate the synapse formation mechanism in B cells, and potentially in other immune cells.
机译:已经显示出B细胞受体以B细胞受体/抗原复合物的分离模式(称为免疫突触)的形式聚集在B细胞和抗原呈递细胞之间的细胞间连接处。我们使用基于随机行走的理论论证和蒙特卡洛模拟研究表面结合的分子扩散对B细胞突触形成的影响。我们的结果表明,B细胞突触的形成对于有限范围的受体-配体复合扩散系数值是最佳的,通常比游离受体的扩散系数低一两个数量级。受体-配体复合物的这种较低的迁移性可以以亲和力依赖性方式显着影响标记的受体或配体的扩散,因为这种受体或配体分子的结合/非结合关键地取决于亲和力。我们的工作显示了如何使用单分子跟踪实验来估计受体-配体复合物的扩散系数的数量级,由于受体-配体键的有限寿命,很难直接在实验中进行测量。我们还显示了如何在单分子水平上这样的抗原运动数据可以提供对B细胞突触形成机制的见解。因此,我们的结果可以指导进一步的单分子跟踪实验,以阐明B细胞以及其他免疫细胞中突触形成的机制。

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