GlyCAM-1 supports leukocyte rolling in flow: evidence for a greater dynamic stability of L-selectin rolling of lymphocytes than of neutrophils.

O Dwir, F Shimron, C Chen, M S Singer, S D Rosen, R Alon
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引用次数: 34

Abstract

L-selectin plays a major role in leukocyte traffic through lymph node high endothelial venules (HEV). We have investigated the role of GlyCAM-1, a major L-selectin ligand produced by HEV, in mediating leukocyte rolling under in vitro flow conditions. Purified GlyCAM-1 was found to support tethering and rolling in physiological shear flow of both human and murine L-selectin expressing leukocytes at an efficiency comparable to the HEV-derived L-selectin ligands termed peripheral node addressin (PNAd). Major dynamic differences between L-selectin rolling of peripheral blood T lymphocytes and neutrophils expressing similar L-selectin level were observed on GlyCAM-1. Lymphocytes established slower and more shear resistant rolling than neutrophils and could roll on GlyCAM-1 at shear stresses lower than the threshold values required for L-selectin-mediated neutrophil rolling. Notably, high stability of L-selectin rolling of lymphocytes requires intact cellular energy, although initial lymphocyte tethering to L-selectin ligands is energy-independent. By contrast, L-selectin mediated rolling of neutrophils is insensitive to energy depletion. The distinct dynamic behavior and energy-dependence of L-selectin rolling in different leukocytes suggest that L-selectin adhesiveness in shear flow is regulated in a cell-type specific manner. The greater stability of L-selectin rolling of lymphocytes on surface-adsorbed GlyCAM-1 may contribute to their selective recruitment at peripheral lymph nodes.

GlyCAM-1支持白细胞在流动中滚动:淋巴细胞的l -选择素滚动比中性粒细胞具有更大的动态稳定性的证据。
l -选择素在白细胞通过淋巴结高内皮小静脉(HEV)的转运中起主要作用。我们研究了HEV产生的主要l -选择素配体GlyCAM-1在体外流动条件下介导白细胞滚动中的作用。纯化的GlyCAM-1被发现支持人类和小鼠表达l -选择素的白细胞在生理剪切流中的捆绑和旋转,其效率与hev衍生的l -选择素配体称为外周节点寻地址素(PNAd)相当。在GlyCAM-1上观察到外周血T淋巴细胞和表达相似l -选择素水平的中性粒细胞之间l -选择素滚动的主要动态差异。淋巴细胞比中性粒细胞建立了更慢、更耐剪切的滚动,并且可以在低于l -选择素介导的中性粒细胞滚动所需阈值的剪切应力下在GlyCAM-1上滚动。值得注意的是,淋巴细胞l -选择素滚动的高稳定性需要完整的细胞能量,尽管初始淋巴细胞粘附在l -选择素配体上是不依赖能量的。相比之下,l -选择素介导的中性粒细胞滚动对能量消耗不敏感。l-选择素在不同白细胞中滚动的不同动态行为和能量依赖性表明,l-选择素在剪切流动中的粘附性以细胞类型特异性的方式调节。淋巴细胞在表面吸附的GlyCAM-1上的l -选择素滚动的更大稳定性可能有助于它们在周围淋巴结的选择性募集。
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