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Ligand-specific binding forces of LFA-1 and Mac-1 in neutrophil adhesion and crawling

机译:LFA-1和MAC-1的配体特异性结合力,中性粒细胞粘附和爬行

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Lymphocyte function-associated antigen-1 (LFA-1) and macrophage-1 antigen (Mac-1) and their counterreceptors such as intercellular cell adhesion molecules (ICAM-1 and ICAM-2), junctional adhesion molecules (JAM-A, JAM-C), and receptors for advanced glycation end products (RAGE) are crucial for promoting polymorphonuclear leukocyte (neutrophil, PMN) recruitment. The underlying mechanisms of ligand-specific bindings in this cascade remain incompletely known. We compared the dynamic force spectra for various LFA-1/Mac-1-ligand bonds using single-molecule atomic force microscopy (AFM) and tested their functions in mediating PMN recruitment under in vitro shear flow. Distinct features of bond rupture forces and lifetimes were uncovered for these ligands, implying their diverse roles in regulating PMN adhesion on endothelium. LFA-1 dominates PMN adhesion on ICAM-1 and ICAM-2, while Mac-1 mediates PMN adhesion on RAGE, JAM-A, and JAM-C, which is consistent with their bond strength. All ligands can trigger PMN spreading and polarization, in which Mac-1 seems to induce outside-in signaling more effectively. LFA-1-ICAM-1 and LFA-1/Mac-1-JAM-C bonds can accelerate PMN crawling under high shear stress, presumably due to their high mechanical strength. This work provides new insight into basic molecular mechanisms of physiological ligands of {beta}2 integrins in PMN recruitment.
机译:淋巴细胞功能相关的抗原-1(LFA-1)和巨噬细胞-1抗原(MAC-1)及其反对中的诸如细胞间粘附分子(ICAM-1和ICAM-2),结粘附分子(Jam-A,果酱-C)和高级糖化终产物(RAGE)的受体对于促进多核白细胞(中性粒细胞,PMN)募集至关重要。该级联中的配体特异性结合的潜在机制保持不完全已知。将各种LFA-1 / MAC-1-配体键的动态力光谱与单分子原子力显微镜(AFM)进行比较,并测试其在体外剪切流下介导PMN募集的功能。对于这些配体,揭示了粘合断裂力和寿命的不同特征,这意味着它们在调节内皮上调节PMN粘附的不同作用。 LFA-1在ICAM-1和ICAM-2上占据PMN粘附,而MAC-1在RAGE,Jam-A和Jam-C上介导PMN粘附,这与它们的粘合强度一致。所有配体都可以触发PMN扩散和极化,其中MAC-1似乎更有效地诱导外部信号传导。 LFA-1-ICAM-1和LFA-1 / MAC-1-JAM-C键可以在高剪切应力下加速PMN爬行,可能是由于其高机械强度。这项工作提供了新的洞察PMN招聘中{β} 2整合素的生理配体的基本分子机制。

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