Cardiovascular Biology Research Program, Oklahoma Medical Research Foundation, Oklahoma City, OK; and.
Department of Biochemistry and Molecular Biology, University of Oklahoma Health Sciences Center, Oklahoma City, OK.
Blood Adv. 2019 Jan 22;3(2):168-183. doi: 10.1182/bloodadvances.2018026294.
In the earliest phase of inflammation, histamine and other agonists rapidly mobilize P-selectin to the apical membranes of endothelial cells, where it initiates rolling adhesion of flowing neutrophils. Clustering of P-selectin in clathrin-coated pits facilitates rolling. Inflammatory cytokines typically signal by regulating gene transcription over a period of hours. We found that neutrophils rolling on P-selectin secreted the cytokine oncostatin M (OSM). The released OSM triggered signals through glycoprotein 130 (gp130)-containing receptors on endothelial cells that, within minutes, further clustered P-selectin and markedly enhanced its adhesive function. Antibodies to OSM or gp130, deletion of the gene encoding OSM in hematopoietic cells, or conditional deletion of the gene encoding gp130 in endothelial cells inhibited neutrophil rolling on P-selectin in trauma-stimulated venules of the mouse cremaster muscle. In a mouse model of P-selectin-dependent deep vein thrombosis, deletion of OSM in hematopoietic cells or of gp130 in endothelial cells markedly inhibited adhesion of neutrophils and monocytes and the rate and extent of thrombus formation. Our results reveal a paracrine-signaling mechanism by which neutrophil-released OSM rapidly influences endothelial cell function during physiological and pathological inflammation.
在炎症的早期阶段,组织胺和其他激动剂迅速将 P 选择素募集到内皮细胞的顶膜,从而启动流动中性粒细胞的滚动黏附。网格蛋白包被小窝中 P 选择素的聚集促进了滚动。炎症细胞因子通常通过在数小时内调节基因转录来发出信号。我们发现,在 P 选择素上滚动的中性粒细胞会分泌细胞因子——肿瘤坏死因子样细胞因子-α(OSM)。释放的 OSM 通过内皮细胞上含有糖蛋白 130(gp130)的受体触发信号,在数分钟内进一步聚集 P 选择素,并显著增强其黏附功能。针对 OSM 或 gp130 的抗体、造血细胞中编码 OSM 的基因缺失,或内皮细胞中编码 gp130 的基因条件性缺失,均能抑制创伤刺激的小鼠提睾肌血管中的 P 选择素上中性粒细胞的滚动。在依赖 P 选择素的深静脉血栓形成的小鼠模型中,造血细胞中 OSM 的缺失或内皮细胞中 gp130 的缺失,显著抑制了中性粒细胞和单核细胞的黏附以及血栓形成的速度和程度。我们的研究结果揭示了一种旁分泌信号机制,即中性粒细胞释放的 OSM 在生理和病理炎症过程中迅速影响内皮细胞功能。