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活化蛋白C直接与Tie2结合:对内皮屏障功能可能产生有益影响。

Activated protein C binds directly to Tie2: possible beneficial effects on endothelial barrier function.

作者信息

Minhas Nikita, Xue Meilang, Jackson Christopher J

机构信息

Sutton Arthritis Research Laboratories, Institute of Bone and Joint Research, Kolling Institute of Medical Research, University of Sydney at Royal North Shore Hospital, Level 10, The Kolling Building, St. Leonards, NSW, 2065, Australia.

出版信息

Cell Mol Life Sci. 2017 May;74(10):1895-1906. doi: 10.1007/s00018-016-2440-6. Epub 2016 Dec 22.

Abstract

Activated protein C (APC) is a natural anticoagulant with strong anti-inflammatory, anti-apoptotic, and barrier stabilizing properties. These cytoprotective properties of APC are thought to be exerted through its pathway involving the binding of APC to endothelial protein C receptor and cleavage of protease-activated receptors. In this study, we found that APC enhanced endothelial barrier integrity via a novel pathway, by binding directly to and activating Tie2, a transmembrane endothelial tyrosine kinase receptor. Binding assays demonstrated that APC competed with the only known ligands of Tie2, the angiopoietins (Angs). APC bound directly to Tie2 (Kd ~3 nM), with markedly stronger binding affinity than Ang2. After binding, APC rapidly activated Tie2 to enhance endothelial barrier function as shown by Evan's blue dye transfer across confluent cell monolayers and in vivo studies. Blocking Tie2 restricted endothelial barrier integrity. This study highlights a novel mechanism by which APC binds directly to Tie2 to enhance endothelial barrier integrity, which helps to explain APC's protective effects in vascular leakage-related pathologies.

摘要

活化蛋白C(APC)是一种天然抗凝剂,具有强大的抗炎、抗凋亡和稳定屏障的特性。APC的这些细胞保护特性被认为是通过其途径发挥作用的,该途径涉及APC与内皮蛋白C受体的结合以及蛋白酶激活受体的裂解。在本研究中,我们发现APC通过一种新的途径增强内皮屏障的完整性,即直接结合并激活跨膜内皮酪氨酸激酶受体Tie2。结合试验表明,APC与Tie2唯一已知的配体血管生成素(Angs)竞争。APC直接与Tie2结合(解离常数~3 nM),结合亲和力明显强于Ang2。结合后,APC迅速激活Tie2以增强内皮屏障功能,这在伊文思蓝染料跨汇合细胞单层转移试验和体内研究中得到了证实。阻断Tie2会限制内皮屏障的完整性。本研究突出了一种新机制,即APC直接与Tie2结合以增强内皮屏障的完整性,这有助于解释APC在与血管渗漏相关的病理状态中的保护作用。

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