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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Endothelial CD2AP Binds the Receptor ICAM-1 To Control Mechanosignaling, Leukocyte Adhesion, and the Route of Leukocyte Diapedesis In Vitro
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Endothelial CD2AP Binds the Receptor ICAM-1 To Control Mechanosignaling, Leukocyte Adhesion, and the Route of Leukocyte Diapedesis In Vitro

机译:内皮CD2ap将受体ICAM-1结合,以控制机械性,白细胞粘附和体外白细胞粘附性的途径

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摘要

Inflammation is driven by excessive transmigration (diapedesis) of leukocytes from the blood to the tissue across the endothelial cell monolayer that lines blood vessels. Leukocyte adhesion, crawling, and transmigration are regulated by clustering of the endothelial mechanosensitive receptor intercellular adhesion molecule-1 (ICAM-1). Whereas several proteins are known to promote ICAM-1 function, the molecular mechanisms that limit ICAM-1-mediated adhesion to prevent excessive leukocyte transmigration remain unknown. We identify the endothelial actin-binding protein CD2-associated protein (CD2AP) as a novel interaction partner of ICAM-1. Loss of CD2AP stimulates the dynamics of ICAM-1 clustering, which facilitates the formation of ICAM-1 complexes on the endothelial cell surface. Consequently, neutrophil adhesion is increased, but crawling is decreased. In turn, this promotes the neutrophil preference for the transcellular over the paracellular transmigration route. Mechanistically, CD2AP is required for mechanosensitive ICAM-1 downstream signaling toward activation of the PI3K, and recruitment of F-actin and of the actin-branching protein cortactin. Moreover, CD2AP is necessary for ICAM-1-induced Rac1 recruitment and activation. Mechanical force applied on ICAM-1 impairs CD2AP binding to ICAM-1, suggesting that a tension-induced negative feedback loop promotes ICAM-1-mediated neutrophil crawling and paracellular transmigration. To our knowledge, these data show for the first time that the mechanoreceptor ICAM-1 is negatively regulated by an actin-binding adaptor protein, i.e., CD2AP, to allow a balanced and spatiotemporal control of its adhesive function. CD2AP is important in kidney dysfunction that is accompanied by inflammation. Our findings provide a mechanistic basis for the role of CD2AP in inflamed vessels, identifying this adaptor protein as a potential therapeutic target.
机译:炎症是通过从血液中的白细胞过量迁移(DIAPERICES)的过度迁移(DIAPERICES)驱动,所述血管内皮细胞单层的组织。通过内皮机械敏感受体细胞间粘附分子-1(ICAM-1)的聚类来调节白细胞粘附,爬网和迁移。虽然已知几种蛋白质促进ICAM-1功能,但限制ICAM-1介导的粘附以防止过量白细胞迁移的分子机制仍然未知。我们将内皮肌动蛋白结合蛋白CD2相关蛋白(CD2AP)鉴定为ICAM-1的新型相互作用伴侣。 CD2AP的丧失刺激ICAM-1聚类的动态,这有利于在内皮细胞表面上形成ICAM-1络合物。因此,增加中性粒细胞粘附,但爬网减少。反过来,这促进了对肺膜迁移路线的型卵细胞的嗜中性粒细胞偏好。机械地,机械敏感性ICAM-1下游信令需要CD2AP,朝向PI3K的激活,并募集F-actin和肌动蛋白 - 分支蛋白质皮质蛋白的募集。此外,ICAM-1诱导的RAC1招生和激活是必要的。施加在ICAM-1上的机械力损害CD2AP与ICAM-1的结合,表明张力诱导的负反馈回路促进ICAM-1介导的中性粒细胞爬行和锥虫迁移。据我们所知,这些数据首次表明机械电机ICAM-1的第一次由肌动蛋白结合适配器蛋白,即CD2AP对其进行负调节,以允许其粘合功能的平衡和时空控制。 CD2AP在伴有炎症的肾功能紊乱中是重要的。我们的研究结果为CD2AP在发炎血管中的作用提供了机械基础,将该适配器蛋白质鉴定为潜在的治疗靶标。

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