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真皮微血管内皮细胞的细胞间连接在空间上紧密相邻,包含紧密连接蛋白和黏附连接蛋白。

Cell-cell junctions of dermal microvascular endothelial cells contain tight and adherens junction proteins in spatial proximity.

作者信息

Rüffer Claas, Strey Anke, Janning Annette, Kim Kwang Sik, Gerke Volker

机构信息

Institute of Medical Biochemistry, Center for Molecular Biology of Inflammation, University of Muenster, von-Esmarch-Strasse 56, D-48149 Muenster, Germany.

出版信息

Biochemistry. 2004 May 11;43(18):5360-9. doi: 10.1021/bi035517c.

Abstract

Endothelial cell-cell contacts control the vascular permeability, thereby regulating the flow of solutes, macromolecules, and leukocytes between blood vessels and interstitial space. Because of specific needs, the endothelial permeability differs significantly between the tight blood-brain barrier endothelium and the more permeable endothelial lining of the non-brain microvasculature. Most likely, such differences are due to a differing architecture of the respective interendothelial cell contacts. However, while the molecules and junctional complexes of macrovascular endothelial cells and the blood-brain barrier endothelium are fairly well characterized, much less is known about the organization of intercellular contacts of microvascular endothelium. Toward this end, we developed a combined cross-linking and immunoprecipitation protocol which enabled us to map nearest neighbor interactions of junctional proteins in the human dermal microvascular endothelial cell line HMEC-1. We show that proteins typically located in tight or adherens junctions of epithelial cells are in the proximity in HMEC-1 cells. This contrasts with the separation of the different types of junctions observed in polarized epithelial cells and "tight" endothelial layers of the blood-brain barrier and argues for a need of the specific junctional contacts in microvascular endothelium possibly required to support an efficient transendothelial migration of leukocytes.

摘要

内皮细胞间接触控制血管通透性,从而调节溶质、大分子和白细胞在血管与间质空间之间的流动。由于特定需求,紧密的血脑屏障内皮与非脑微血管系统中更具通透性的内皮衬里之间的内皮通透性存在显著差异。很可能,这种差异是由于各自内皮细胞间接触的结构不同所致。然而,尽管大血管内皮细胞和血脑屏障内皮细胞的分子和连接复合体已得到相当充分的表征,但对于微血管内皮细胞间接触的组织情况却知之甚少。为此,我们开发了一种交联与免疫沉淀相结合的方案,该方案使我们能够绘制人真皮微血管内皮细胞系HMEC-1中连接蛋白的近邻相互作用图谱。我们发现,通常位于上皮细胞紧密连接或黏着连接中的蛋白质在HMEC-1细胞中彼此靠近。这与在极化上皮细胞以及血脑屏障的“紧密”内皮层中观察到的不同类型连接的分离情况形成对比,这表明微血管内皮细胞中可能需要特定的连接接触来支持白细胞高效的跨内皮迁移。

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