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CEACAM1:血管通透性的关键调节因子。

CEACAM1: a key regulator of vascular permeability.

机构信息

Goodman Cancer Research Centre, McGill University, Montreal, QC H3G 1Y6, Canada.

出版信息

J Cell Sci. 2010 Dec 15;123(Pt 24):4221-30. doi: 10.1242/jcs.073635. Epub 2010 Nov 16.

Abstract

Carcinoembryonic antigen cell adhesion molecule-1 (CEACAM1) is an immunoglobulin-like cell surface co-receptor expressed on epithelial, hematopoietic and endothelial cells. CEACAM1 functions as an adhesion molecule, mainly binding to itself or other members of the CEA family. We and others have previously shown that CEACAM1 is crucial for in vivo vascular integrity during ischemic neo-vascularization. Here, we have deciphered the roles of CEACAM1 in normal and pathological vascularization. We have found that Ceacam1-/- mice exhibit a significant increase in basal vascular permeability related to increased basal Akt and endothelial nitric oxide synthase (eNOS) activation in primary murine lung endothelial cells (MLECs). Moreover, CEACAM1 deletion in MLECs inhibits VEGF-mediated nitric oxide (NO) production, consistent with defective VEGF-dependent in vivo permeability in Ceacam1-/- mice. In addition, Ceacam1-null mice exhibit increased permeability of tumor vasculature. Finally, we demonstrate that CEACAM1 is tyrosine-phosphorylated upon VEGF treatment in a SHP-1- and Src-dependent manner, and that the key residues of the long cytoplasmic domain of CEACAM1 are crucial for CEACAM1 phosphorylation and NO production. This data represents the first report, to our knowledge, of a functional link between CEACAM1 and the VEGFR2/Akt/eNOS-mediated vascular permeability pathway.

摘要

癌胚抗原细胞黏附分子-1(CEACAM1)是一种免疫球蛋白样细胞表面共受体,表达于上皮细胞、造血细胞和内皮细胞。CEACAM1 作为黏附分子,主要与自身或其他 CEA 家族成员结合。我们和其他人之前已经表明,CEACAM1 对于缺血性新血管生成过程中的体内血管完整性至关重要。在这里,我们已经阐明了 CEACAM1 在正常和病理血管生成中的作用。我们发现,Ceacam1-/- 小鼠表现出与初级鼠肺内皮细胞(MLEC)中基础 Akt 和内皮型一氧化氮合酶(eNOS)激活增加相关的显著基础血管通透性增加。此外,MLEC 中的 CEACAM1 缺失抑制了 VEGF 介导的一氧化氮(NO)产生,与 Ceacam1-/- 小鼠中 VEGF 依赖性体内通透性缺陷一致。此外,Ceacam1 缺失小鼠表现出肿瘤血管通透性增加。最后,我们证明 CEACAM1 在 VEGF 处理下以 SHP-1 和 Src 依赖的方式发生酪氨酸磷酸化,并且 CEACAM1 长胞质结构域的关键残基对于 CEACAM1 磷酸化和 NO 产生至关重要。该数据代表了我们所知的第一个 CEACAM1 与 VEGFR2/Akt/eNOS 介导的血管通透性途径之间存在功能联系的报告。

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