Hordijk Peter L
Department of Molecular Cell Biology, Sanquin Research and Landsteiner Laboratory, Academic Medical Center, Swammerdam Institute for Life Sciences, University of Amsterdam, Plesmanlaan 125, 1066 CX, Amsterdam, The Netherlands.
Department of Physiology, VU University Medical Center, Amsterdam, The Netherlands.
Cell Mol Life Sci. 2016 Apr;73(8):1591-608. doi: 10.1007/s00018-016-2136-y. Epub 2016 Jan 21.
In the process of leukocyte migration from the circulation across the vascular wall, the crosstalk with endothelial cells that line the blood vessels is essential. It is now firmly established that in endothelial cells important signaling events are initiated upon leukocyte adhesion that impinge on the regulation of cell-cell contact and control the efficiency of transendothelial migration. In addition, several external factors such as shear force and vascular stiffness were recently identified as important regulators of endothelial signaling and, consequently, leukocyte transmigration. Here, I review recent insights into endothelial signaling events that are linked to leukocyte migration across the vessel wall. In this field, protein phosphorylation and Rho-mediated cytoskeletal dynamics are still widely studied using increasingly sophisticated mouse models. In addition, activation of tyrosine phosphatases, changes in endothelial cell stiffness as well as different vascular beds have all been established as important factors in endothelial signaling and leukocyte transmigration. Finally, I address less-well-studied but interesting components in the endothelium that also control transendothelial migration, such as the ephrins and their Eph receptors, that provide novel insights in the complexity associated with this process.
在白细胞从循环系统穿过血管壁迁移的过程中,与血管内壁的内皮细胞进行相互作用至关重要。现已明确,白细胞黏附在内皮细胞上会引发重要的信号转导事件,这些事件会影响细胞间接触的调节,并控制跨内皮迁移的效率。此外,最近发现诸如剪切力和血管硬度等几种外部因素是内皮信号转导以及白细胞跨膜迁移的重要调节因子。在此,我将回顾与白细胞跨血管壁迁移相关的内皮信号转导事件的最新见解。在该领域,仍在使用日益复杂的小鼠模型广泛研究蛋白质磷酸化和Rho介导的细胞骨架动力学。此外,酪氨酸磷酸酶的激活、内皮细胞硬度的变化以及不同的血管床均已被确定为内皮信号转导和白细胞跨膜迁移的重要因素。最后,我将探讨内皮细胞中研究较少但有趣的成分,它们也控制跨内皮迁移,例如 Ephrin 及其 Eph 受体,这些成分为此过程的复杂性提供了新的见解。