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Interplay between Rolling and Firm Adhesion Elucidated with a Cell-Free System Engineered with Two Distinct Receptor-Ligand Pairs

机译:使用两个不同的受体-配体对设计的无细胞系统阐明了滚动和牢固粘附之间的相互作用

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摘要

The firm arrest of leukocytes to the endothelium during inflammation is known to be mediated by endothelial intercellular adhesion molecules (ICAMs) binding to activated integrins displayed on leukocyte surface. Selectin-ligand interactions, which mediate rolling, are believed to be important for facilitating firm adhesion, either by activating integrins or by facilitating the transition to firm adhesion by making it easier for integrins to bind. Although leukocytes employ two distinct adhesion molecules that mediate different states of adhesion, the fundamental biophysical mechanisms by which two pairs of adhesion molecules facilitate cell adhesion is not well understood. In this work, we attempt to understand the interaction between two molecular systems using a cell-free system in which polystyrene microspheres functionalized with the selectin ligand, sialyl LewisX (sLeX), and an antibody against ICAM-1, aICAM-1, are perfused over P-selectin/ICAM-1 coated surfaces in a parallel plate flow chamber. Separately, sLeX/P-selectin interactions support rolling and aICAM-1/ICAM-1 interactions mediate firm adhesion. Our results show that sLeX/aICAM-1 microspheres will firmly adhere to P-selectin/ICAM-1 coated surfaces, and that the extent of firm adhesion of microspheres is dependent on wall shear stress within the flow chamber, sLeX/aICAM-1 microsphere site density, and P-selectin/ICAM-1 surface density ratio. We show that P-selectin's interaction with sLeX mechanistically facilitates firm adhesion mediated by antibody binding to ICAM-1: the extent of firm adhesion for the same concentration of aICAM-1/ICAM-1 interaction is greater when sLeX/P-selectin interactions are present. aICAM-1/ICAM-1 interactions also stabilize rolling by increasing pause times and decreasing average rolling velocities. Although aICAM-1 is a surrogate for β2-integrin, the kinetics of association between aICAM-1 and ICAM-1 is within a factor of 1.5 of activated integrin binding ICAM-1, suggesting the findings from this model system may be insightful to the mechanism of leukocyte firm adhesion. In particular, these experimental results show how two molecule systems can interact to produce an effect not achievable by either system alone, a fundamental mechanism that may pervade leukocyte adhesion biology.
机译:已知在炎症过程中白细胞到内皮的牢固停滞是由内皮细胞间粘附分子(ICAM)与白细胞表面显示的活化整联蛋白结合而介导的。认为介导滚动的选择蛋白-配体相互作用对于促进牢固的粘附是重要的,通过激活整联蛋白或通过使整联蛋白更易于结合来促进向牢固的粘附的转变。尽管白细胞使用两个不同的粘附分子来介导不同的粘附状态,但尚不清楚两对粘附分子促进细胞粘附的基本生物物理机制。在这项工作中,我们尝试使用无细胞系统了解两个分子系统之间的相互作用,在该系统中,聚苯乙烯微球被选择素配体唾液酸化的路易斯 X (sLe X ),然后在平行板流动室中的P-selectin / ICAM-1包被的表面上灌注抗ICAM-1的抗体aICAM-1。单独地,sLe X / P-选择素相互作用支持滚动,而aICAM-1 / ICAM-1相互作用介导牢固的粘附。我们的结果表明,sLe X / aICAM-1微球将牢固粘附至P-selectin / ICAM-1涂层表面,并且微球牢固粘附的程度取决于流动过程中的壁切应力室,sLe X / aICAM-1微球位点密度和P-选择素/ ICAM-1表面密度比。我们显示P-选择素与sLe X 的相互作用在机械上促进了抗体与ICAM-1的结合介导的牢固粘附:相同浓度的aICAM-1 / ICAM-1相互作用的牢固粘附程度更大当存在sLe X / P-selectin相互作用时。 aICAM-1 / ICAM-1相互作用还通过增加暂停时间和降低平均滚动速度来稳定滚动。尽管aICAM-1是β2-整合素的替代物,但aICAM-1和ICAM-1之间的缔合动力学在激活的整合素结合ICAM-1的1.5范围内,这表明该模型系统的发现可能对白细胞牢固粘附的机制。特别是,这些实验结果表明,两个分子系统如何相互作用才能产生单独一个系统无法实现的效果,这可能是白细胞粘附生物学的基本机制。

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