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Force spectroscopy of the leukocyte function-associated antigen-1/intercellular adhesion molecule-1 interaction.

机译:与白细胞功能相关的抗原1 /细胞间粘附分子1相互作用的力谱。

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摘要

Interactions between leukocyte function-associated antigen-1 (LFA-1) with its cognate ligand, intercellular adhesion molecule-1 (ICAM-1) play a crucial role in leukocyte adhesion. Because the cell and its adhesive components are subject to external perturbation from the surrounding flow of blood, it is important to understand the binding properties of the LFA-1/ICAM-1 interaction in both steady state and in the presence of an external pulling force. Here we report on atomic force microscopy (AFM) measurements of the unbinding of LFA-1 from ICAM-1. The single molecule measurements revealed the energy landscape corresponding to the dissociation of the LFA-1/ICAM-1 complex and provided the basis for defining the energetic determinants of the complex at equilibrium and under the influence of an external force. The AFM force measurements were performed in an experimental system consisting of an LFA-1-expressing T cell hybridoma, 3A9, attached to the end of the AFM cantilever and an apposing surface expressing ICAM-1. In measurements covering three orders of magnitude change in force loading rate, the LFA-1/ICAM-1 force spectrum (i.e., unbinding force versus loading rate) revealed a fast and a slow loading regime that characterized a steep inner activation barrier and a wide outer activation barrier, respectively. The addition of Mg(2+), a cofactor that stabilizes the LFA-1/ICAM-1 interaction, elevated the unbinding force of the complex in the slow loading regime. In contrast, the presence of EDTA suppressed the inner barrier of the LFA-1/ICAM-1 complex. These results suggest that the equilibrium dissociation constant of the LFA-1/ICAM-1 interaction is regulated by the energetics of the outer activation barrier of the complex, while the ability of the complex to resist a pulling force is determined by the divalent cation-dependent inner activation barrier.
机译:白细胞功能相关抗原1(LFA-1)与它的同源配体,细胞间粘附分子1(ICAM-1)之间的相互作用在白细胞粘附中起关键作用。由于细胞及其粘附成分会受到周围血液流动的外部干扰,因此了解LFA-1 / ICAM-1相互作用在稳定状态和存在外部拉力的情况下的结合特性非常重要。在这里,我们报告LFA-1从ICAM-1的解除结合的原子力显微镜(AFM)测量。单分子测量揭示了对应于LFA-1 / ICAM-1配合物解离的能量分布,并为定义配合物在平衡和受外力影响时的能量决定因素提供了基础。 AFM力的测量是在一个实验系统中进行的,该系统由连接到AFM悬臂末端的表达LFA-1的T细胞杂交瘤3A9和表达ICAM-1的相对表面组成。在测量力加载速率的三个数量级变化的测量中,LFA-1 / ICAM-1力谱(即,释放力与加载速率的关系)显示出快速和缓慢的加载方式,其特征是陡峭的内部激活壁垒和宽的外激活屏障。 Mg(2+),一种稳定LFA-1 / ICAM-1相互作用的辅助因子,增加了在缓慢加载条件下复合物的解结合力。相反,EDTA的存在抑制了LFA-1 / ICAM-1复合物的内部屏障。这些结果表明,LFA-1 / ICAM-1相互作用的平衡解离常数受配合物外部活化势垒的能量调控,而配合物抵抗拉力的能力则取决于二价阳离子-依赖的内部激活障碍。

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