Burroughs Nigel John, Wülfing Christoph
Mathematics Institute, University of Warwick, Coventry CV4 7AL, United Kingdom.
Biophys J. 2002 Oct;83(4):1784-96. doi: 10.1016/S0006-3495(02)73944-1.
Receptor-ligand couples in the cell-cell contact interface between a T cell and an antigen-presenting cell form distinct geometric patterns and undergo spatial rearrangement within the contact interface. Spatial segregation of the antigen and adhesion receptors occurs within seconds of contact, central aggregation of the antigen receptor then occurring over 1-5 min. This structure, called the immunological synapse, is becoming a paradigm for localized signaling. However, the mechanisms driving its formation, in particular spatial segregation, are currently not understood. With a reaction diffusion model incorporating thermodynamics, elasticity, and reaction kinetics, we examine the hypothesis that differing bond lengths (extracellular domain size) is the driving force behind molecular segregation. We derive two key conditions necessary for segregation: a thermodynamic criterion on the effective bond elasticity and a requirement for the seeding/nucleation of domains. Domains have a minimum length scale and will only spontaneously coalesce/aggregate if the contact area is small or the membrane relaxation distance large. Otherwise, differential attachment of receptors to the cytoskeleton is required for central aggregation. Our analysis indicates that differential bond lengths have a significant effect on synapse dynamics, i.e., there is a significant contribution to the free energy of the interaction, suggesting that segregation by differential bond length is important in cell-cell contact interfaces and the immunological synapse.
T细胞与抗原呈递细胞之间细胞 - 细胞接触界面中的受体 - 配体对形成独特的几何模式,并在接触界面内发生空间重排。抗原和黏附受体的空间分离在接触后数秒内发生,随后抗原受体在1 - 5分钟内发生中心聚集。这种结构称为免疫突触,正成为局部信号传导的范例。然而,目前尚不清楚驱动其形成的机制,特别是空间分离的机制。通过结合热力学、弹性和反应动力学的反应扩散模型,我们检验了不同键长(细胞外结构域大小)是分子分离背后驱动力的假设。我们推导出分离所需的两个关键条件:有效键弹性的热力学标准和结构域的播种/成核要求。结构域有一个最小长度尺度,并且只有在接触面积小或膜松弛距离大时才会自发合并/聚集。否则,受体与细胞骨架的差异附着是中心聚集所必需的。我们的分析表明,不同的键长对突触动力学有显著影响,即对相互作用的自由能有显著贡献,这表明通过不同键长进行的分离在细胞 - 细胞接触界面和免疫突触中很重要。