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低力减缓L-选择素从P-选择素糖蛋白配体-1和内聚糖上的解离。

Low force decelerates L-selectin dissociation from P-selectin glycoprotein ligand-1 and endoglycan.

作者信息

Sarangapani Krishna K, Yago Tadayuki, Klopocki Arkadiusz G, Lawrence Michael B, Fieger Claudia B, Rosen Steven D, McEver Rodger P, Zhu Cheng

机构信息

Coulter Department of Biomedical Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA.

出版信息

J Biol Chem. 2004 Jan 16;279(3):2291-8. doi: 10.1074/jbc.M310396200. Epub 2003 Oct 22.

Abstract

Selectin-ligand interactions mediate the tethering and rolling of circulating leukocytes on vascular surfaces during inflammation and immune surveillance. To support rolling, these interactions are thought to have rapid off-rates that increase slowly as wall shear stress increases. However, the increase of off-rate with force, an intuitive characteristic named slip bonds, is at odds with a shear threshold requirement for selectin-mediated cell rolling. As shear drops below the threshold, fewer cells roll and those that do roll less stably and with higher velocity. We recently demonstrated a low force regime where the off-rate of P-selectin interacting with P-selectin glycoprotein ligand-1 (PSGL-1) decreased with increasing force. This counter-intuitive characteristic, named catch bonds, might partially explain the shear threshold phenomenon. Because L-selectin-mediated cell rolling exhibits a much more pronounced shear threshold, we used atomic force microscopy and flow chamber experiments to determine off-rates of L-selectin interacting with their physiological ligands and with an antibody. Catch bonds were observed at low forces for L-selectin-PSGL-1 interactions coinciding with the shear threshold range, whereas slip bonds were observed at higher forces. These catch-slip transitional bonds were also observed for L-selectin interacting with endoglycan, a newly identified PSGL-1-like ligand. By contrast, only slip bonds were observed for L-selectin-antibody interactions. These findings suggest that catch bonds contribute to the shear threshold for rolling and are a common characteristic of selectin-ligand interactions.

摘要

在炎症和免疫监测过程中,选择素-配体相互作用介导循环白细胞在血管表面的锚定和滚动。为了支持滚动,这些相互作用被认为具有快速解离速率,且随着壁面剪应力的增加而缓慢增加。然而,解离速率随力增加,即一种名为滑动键的直观特性,与选择素介导的细胞滚动的剪应力阈值要求相矛盾。当剪应力降至阈值以下时,滚动的细胞减少,且那些仍在滚动的细胞稳定性降低、速度加快。我们最近证明了一种低力状态,其中P-选择素与P-选择素糖蛋白配体-1(PSGL-1)相互作用的解离速率随力增加而降低。这种与直觉相反的特性,即捕获键,可能部分解释了剪应力阈值现象。由于L-选择素介导的细胞滚动表现出更为明显的剪应力阈值,我们使用原子力显微镜和流动腔实验来确定L-选择素与其生理配体以及与一种抗体相互作用的解离速率。在与剪应力阈值范围一致的低力条件下,观察到L-选择素与PSGL-1相互作用存在捕获键,而在较高力条件下观察到滑动键。在L-选择素与内皮聚糖(一种新鉴定的类似PSGL-1的配体)相互作用时,也观察到了这种捕获-滑动过渡键。相比之下,L-选择素与抗体相互作用时仅观察到滑动键。这些发现表明,捕获键有助于滚动的剪应力阈值,并且是选择素-配体相互作用的一个共同特征。

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