University of California Davis, Davis, CA, USA.
Ann Biomed Eng. 2012 Apr;40(4):849-59. doi: 10.1007/s10439-011-0507-y. Epub 2012 Jan 24.
Application of mechanical force to bonds between selectins and their ligands is a requirement for these adhesion receptors to optimally perform functions that include leukocyte tethering and activation of stable adhesion. Although all three selectins are reported to signal from the outside-in subsequent to ligand binding, E-selectin is unique in its capacity to bind multiple sialyl Lewis x presenting ligands and mediate slow rolling on the order of a micron per second. A diverse set of ligands are recognized by E-selectin in the mouse, including ESL-1, CD44 (HCELL), and PSGL-1 which are critical in transition from slow rolling to arrest and for efficient transendothelial migration. The molecular recognition process is different in humans as L-selectin is a major ligand, which along with glycolipids constitute more than half of the E-selectin receptors on human polymorphonuclear neutrophils (PMN). In addition, E-selectin is most efficient at raising the affinity and avidity of CD18 integrins that supports PMN deceleration and trafficking to sites of acute inflammation. The mechanism is only partially understood but known to involve a rise in cytosolic calcium and tyrosine phosphorylation that activates p38 MAP kinase and Syk kinase, both of which transduce signals from clustered E-selectin ligands. In this review we highlight the molecular recognition and mechanical requirements of this process to reveal how E-selectin confers selectivity and efficiency of signaling for extravasation at sites of inflammation and the mechanism of action of a new glycomimetic antagonist targeted to the lectin domain that has shown efficacy in blocking neutrophil activation and adhesion on inflamed endothelium.
机械力作用于选择素与其配体之间的键是这些粘附受体最佳发挥功能的必要条件,这些功能包括白细胞的系链和稳定粘附的激活。尽管所有三种选择素都被报道在配体结合后通过从外向内信号传导,但 E-选择素独特的能力是结合多个唾液酸化 Lewis x 呈现配体并介导每秒几微米的缓慢滚动。E-选择素在小鼠中识别出一组多样化的配体,包括 ESL-1、CD44(HCELL)和 PSGL-1,它们在从缓慢滚动到停止和有效穿过内皮迁移的过渡中至关重要。在人类中,分子识别过程不同,因为 L-选择素是主要的配体,它与糖脂一起构成了人类多形核粒细胞(PMN)上 E-选择素受体的一半以上。此外,E-选择素在提高 CD18 整合素的亲和力和活性方面最为有效,这支持 PMN 减速和向急性炎症部位的迁移。其机制尚未完全了解,但已知涉及细胞溶质钙和酪氨酸磷酸化的增加,从而激活 p38 MAP 激酶和 Syk 激酶,两者都从聚集的 E-选择素配体传递信号。在这篇综述中,我们强调了这个过程的分子识别和机械要求,以揭示 E-选择素如何赋予炎症部位渗出的选择性和信号效率,以及针对凝集素结构域的新型糖模拟拮抗剂的作用机制,该拮抗剂已显示出在阻断中性粒细胞激活和黏附在炎症内皮上的功效。