Vascular endothelial cell adhesion and signaling during leukocyte recruitment.

Advances in dermatology Pub Date : 2004-01-01
Martin S Kluger
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Abstract

During inflammation, coordinated expression of cytokine-induced adhesion molecules (CAMs) on postcapillary venular endothelial cells (ECs) regulates leukocyte recruitment. During their recruitment from blood, leukocytes adhere to EC CAMs, activating signaling pathways inside ECs. In a forthcoming paradigm, leukocyte transendothelial migration requires active EC participation, with extracellular adhesive CAM functions mirrored by cytoplasmic do-main-dependent intracellular events. These events serve to reorganize the EC actin cytoskeleton. Investigators have visualized this as changes in EC shape, transient opening of EC-EC contacts, and redistribution of CAMs expressed on the luminal EC surface. In this review, we (1) summarize the overlapping extracellular adhesive properties of the 3 EC CAMs most important for leukocyte recruitment during inflammation, namely, E-selectin, vascular cell adhesion molecule, and intercellular adhesion molecule-1; (2) explore the role of these 3 CAMs as signal transducers by identifying the intracellular signals (Ca++, Rho/Rac, and phosphatidylinositol 4,5-bisphosphate) that upon leukocyte engagement, reorganize the EC cytoskeleton and redistribute these apical CAMs, thereby favoring leukocyte recruitment; and (3) describe how CAM-derived signals lead to ezrin-radixin-moesin complex formation and how this complex of plasma membrane-cytoskeleton adapter proteins coordinates CAM-driven intracellular signals with extracellular adhesive CAM functions. This literature review suggests that the cytoplasmic domains of these EC CAMs and their downstream effectors represent new and potentially beneficial intracellular therapeutic targets for treating diseases of the skin.

白细胞募集过程中血管内皮细胞的粘附和信号传导。
炎症期间,细胞因子诱导的粘附分子(CAMs)在毛细血管后静脉内皮细胞(ECs)上的协调表达调节白细胞募集。在从血液中募集的过程中,白细胞粘附在EC CAMs上,激活EC内的信号通路。在即将到来的范式中,白细胞跨内皮迁移需要积极的EC参与,细胞外粘附CAM功能反映在细胞质do-main依赖的细胞内事件中。这些事件有助于重组EC肌动蛋白细胞骨架。研究人员将其可视化为EC形状的变化,EC-EC接触的瞬时打开,以及在腔内EC表面表达的cam的重新分布。在这篇综述中,我们(1)总结了炎症过程中对白细胞募集最重要的3种EC cam的重叠细胞外粘附特性,即e-选择素、血管细胞粘附分子和细胞间粘附分子-1;(2)通过识别细胞内信号(Ca++、Rho/Rac和磷脂酰肌醇4,5-二磷酸),探索这3种CAMs作为信号转导的作用,这些信号在白细胞参与时重组EC细胞骨架并重新分配这些顶端CAMs,从而有利于白细胞的招募;(3)描述CAM衍生信号如何导致ezrin-radixin-moesin复合物形成,以及这种质膜-细胞骨架适配器蛋白复合物如何协调CAM驱动的细胞内信号与细胞外粘附CAM功能。这篇文献综述表明,这些EC cam的细胞质结构域及其下游效应物代表了治疗皮肤疾病的新的和潜在有益的细胞内治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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