Chi Jen-Tsan, Chang Howard Y, Haraldsen Guttorm, Jahnsen Frode L, Troyanskaya Olga G, Chang Dustin S, Wang Zhen, Rockson Stanley G, van de Rijn Matt, Botstein David, Brown Patrick O
Department of Biochemistry, Stanford University School of Medicine, Stanford, CA 94305, USA.
Proc Natl Acad Sci U S A. 2003 Sep 16;100(19):10623-8. doi: 10.1073/pnas.1434429100. Epub 2003 Sep 8.
The vascular system is locally specialized to accommodate widely varying blood flow and pressure and the distinct needs of individual tissues. The endothelial cells (ECs) that line the lumens of blood and lymphatic vessels play an integral role in the regional specialization of vascular structure and physiology. However, our understanding of EC diversity is limited. To explore EC specialization on a global scale, we used DNA microarrays to determine the expression profile of 53 cultured ECs. We found that ECs from different blood vessels and microvascular ECs from different tissues have distinct and characteristic gene expression profiles. Pervasive differences in gene expression patterns distinguish the ECs of large vessels from microvascular ECs. We identified groups of genes characteristic of arterial and venous endothelium. Hey2, the human homologue of the zebrafish gene gridlock, was selectively expressed in arterial ECs and induced the expression of several arterial-specific genes. Several genes critical in the establishment of left/right asymmetry were expressed preferentially in venous ECs, suggesting coordination between vascular differentiation and body plan development. Tissue-specific expression patterns in different tissue microvascular ECs suggest they are distinct differentiated cell types that play roles in the local physiology of their respective organs and tissues.
血管系统在局部具有特殊性,以适应广泛变化的血流和压力以及各个组织的独特需求。衬于血管和淋巴管腔面的内皮细胞(ECs)在血管结构和生理学的区域特化中发挥着不可或缺的作用。然而,我们对内皮细胞多样性的了解有限。为了在全球范围内探索内皮细胞的特化,我们使用DNA微阵列来确定53种培养的内皮细胞的表达谱。我们发现,来自不同血管的内皮细胞以及来自不同组织的微血管内皮细胞具有独特的基因表达谱。基因表达模式的普遍差异区分了大血管内皮细胞和微血管内皮细胞。我们鉴定出了动脉和静脉内皮细胞特有的基因群。Hey2是斑马鱼基因gridlock的人类同源物,在动脉内皮细胞中选择性表达,并诱导了几个动脉特异性基因的表达。几个在左右不对称建立过程中起关键作用的基因在静脉内皮细胞中优先表达,这表明血管分化与身体发育模式之间存在协调关系。不同组织微血管内皮细胞的组织特异性表达模式表明它们是不同的分化细胞类型,在各自器官和组织的局部生理学中发挥作用。