Jalkanen Sirpa, Karikoski Marika, Mercier Nathalie, Koskinen Kaisa, Henttinen Tiina, Elima Kati, Salmivirta Katriina, Salmi Marko
MediCity Research Laboratory, University of Turku, Turku, Finland.
Blood. 2007 Sep 15;110(6):1864-70. doi: 10.1182/blood-2007-01-069674. Epub 2007 Jun 4.
Leukocyte migration from the blood into tissues is pivotal in immune homeostasis and in inflammation. During the multistep extravasation cascade, endothelial selectins (P- and E-selectin) and vascular adhesion protein-1 (VAP-1), a cell-surface-expressed oxidase, are important in tethering and rolling. Here, we studied the signaling functions of the catalytic activity of VAP-1. Using human endothelial cells transfected with wild-type VAP-1 and an enzymatically inactive VAP-1 point mutant, we show that transcription and translation of E- and P-selectins are induced through the enzymatic activity of VAP-1. Moreover, use of VAP-1-deficient animals and VAP-1-deficient animals carrying the human VAP-1 as a transgene show a VAP-enzyme activity-dependent induction of P-selectin in vivo. Up-regulation of P-selectin was found both in high endothelial venules in lymphoid tissues and in flat-walled vessels in noninflamed tissues. VAP-1 activity in vivo led to increased P-selectin-dependent binding of lymphocytes to endothelial cells. These data show that the oxidase reaction catalyzed by VAP-1 alters the expression of other molecules involved in the leukocyte extravasation cascade. Our findings indicate cross-talk between adhesion molecules involved in the tethering and rolling of leukocytes and show that VAP-1-dependent signaling can prime the vessels for an enhanced inflammatory response.
白细胞从血液迁移至组织在免疫稳态和炎症过程中起着关键作用。在多步骤渗出级联反应中,内皮细胞选择素(P-选择素和E-选择素)以及血管黏附蛋白-1(VAP-1,一种细胞表面表达的氧化酶)在细胞系留和滚动过程中发挥重要作用。在此,我们研究了VAP-1催化活性的信号传导功能。利用转染了野生型VAP-1和酶活性缺失的VAP-1点突变体的人内皮细胞,我们发现E-选择素和P-选择素的转录和翻译是通过VAP-1的酶活性诱导产生的。此外,使用VAP-1缺陷动物以及携带人VAP-1作为转基因的VAP-1缺陷动物,结果显示体内P-选择素的诱导依赖于VAP酶活性。在淋巴组织的高内皮微静脉以及非炎症组织的扁平壁血管中均发现了P-选择素的上调。体内VAP-1活性导致淋巴细胞与内皮细胞的P-选择素依赖性结合增加。这些数据表明,VAP-1催化的氧化酶反应改变了白细胞渗出级联反应中其他相关分子的表达。我们的研究结果表明,参与白细胞系留和滚动的黏附分子之间存在相互作用,并且表明VAP-1依赖性信号传导可使血管做好准备以增强炎症反应。