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Triphasic Force Dependence of E-Selectin/Ligand Dissociation Governs Cell Rolling under Flow

机译:E-选择蛋白/配体解离的三相力依赖性控制流动下的细胞滚动

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摘要

During inflammation, flowing leukocytes tether to and roll on vascular surfaces through the association and dissociation of selectin/ligand bonds. The interactions of P- and L- selectins with their respective ligands exhibit catch-slip bonds, such that increasing force initially prolongs and then shortens bond lifetimes. In addition, catch-slip bonds have been shown to govern L-selectin-mediated cell rolling. Using a flow chamber and biomembrane force probe, we show a triphasic force dependence of E-selectin/ligand dissociation that initially behaves as slip bonds, then transitions to catch bonds, and finally transitions again to slip bonds as the force increases. These transitions govern the velocities of neutrophils, HL-60 cells, and Colo-205 cells rolling on E-selectin, as evidenced by the fact that their velocities exhibited a triphasic force dependence that inversely matched the triphasic lifetime-force relationship. At low forces, slip bonds may also precede catch bonds for interactions of P- and L-selectin with their ligands.
机译:在发炎期间,流动的白细胞通过选择素/配体键的结合和解离而束缚在血管表面并在血管表面滚动。 P-和L-选择素与它们各自的配体的相互作用表现出滑移键,从而增加的力最初会延长然后缩短键的寿命。另外,已经显示了滑移键支配L-选择蛋白介导的细胞滚动。使用流动室和生物膜力探针,我们显示了E-选择素/配体解离的三相力依赖性,其最初表现为滑键,然后转变为捕获键,最后随着力的增加再次转变为滑键。这些转变控制着在E-选择素上滚动的嗜中性粒细胞,HL-60细胞和Colo-205细胞的速度,这一事实证明了它们的速度表现出与三相寿命-力关系成反比的三相力依赖性。在低作用力下,滑动键也可先于捕获键,以使P-选择素和L-选择素与其配体相互作用。

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