Oike Yuichi, Ito Yasuhiro, Hamada Koichi, Zhang Xiu-Qin, Miyata Keishi, Arai Fumio, Inada Tomohisa, Araki Kimi, Nakagata Naomi, Takeya Motohiro, Kisanuki Yaz Y, Yanagisawa Masashi, Gale Nicholas W, Suda Toshio
Department of Cell Differentiation, the Institute of Molecular Embryology and Genetics, Kumamoto University, Kumamoto, Japan.
Blood. 2002 Aug 15;100(4):1326-33.
Although the cellular and molecular mechanisms governing angiogenesis are only beginning to be understood, signaling through endothelial-restricted receptors, particularly receptor tyrosine kinases, has been shown to play a pivotal role in these events. Recent reports show that EphB receptor tyrosine kinases and their transmembrane-type ephrin-B2 ligands play essential roles in the embryonic vasculature. These studies suggest that cell-to-cell repellent effects due to bidirectional EphB/ephrin-B2 signaling may be crucial for vascular development, similar to the mechanism described for neuronal development. To test this hypothesis, we disrupted the precise expression pattern of EphB/ephrin-B2 in vivo by generating transgenic (CAGp-ephrin-B2 Tg) mice that express ephrin-B2 under the control of a ubiquitous and constitutive promoter, CMV enhancer-beta-actin promoter-beta-globin splicing acceptor (CAG). These mice displayed an abnormal segmental arrangement of intersomitic vessels, while such anomalies were not observed in Tie-2p-ephrin-B2 Tg mice in which ephrin-B2 was overexpressed in only vascular endothelial cells (ECs). This finding suggests that non-ECs expressing ephrin-B2 alter the migration of ECs expressing EphB receptors into the intersomitic region where ephrin-B2 expression is normally absent. CAGp-ephrin-B2 Tg mice show sudden death at neonatal stages from aortic dissecting aneurysms due to defective recruitment of vascular smooth muscle cells to the ascending aorta. EphB/ephrin-B2 signaling between endothelial cells and surrounding mesenchymal cells plays an essential role in vasculogenesis, angiogenesis, and vessel maturation.
尽管调控血管生成的细胞和分子机制才刚刚开始被理解,但通过内皮细胞特异性受体,特别是受体酪氨酸激酶的信号传导,已被证明在这些过程中起关键作用。最近的报道表明,EphB受体酪氨酸激酶及其跨膜型ephrin-B2配体在胚胎血管系统中发挥着重要作用。这些研究表明,双向EphB/ephrin-B2信号传导所导致的细胞间排斥作用对于血管发育可能至关重要,类似于在神经元发育中所描述的机制。为了验证这一假设,我们通过构建转基因(CAGp-ephrin-B2 Tg)小鼠,在普遍存在且组成型的启动子——巨细胞病毒增强子-β-肌动蛋白启动子-β-珠蛋白剪接受体(CAG)的控制下表达ephrin-B2,从而在体内破坏EphB/ephrin-B2的精确表达模式。这些小鼠显示出体节间血管的节段排列异常,而在仅在血管内皮细胞(ECs)中过表达ephrin-B2的Tie-2p-ephrin-B2 Tg小鼠中未观察到此类异常。这一发现表明,表达ephrin-B2的非内皮细胞会改变表达EphB受体的内皮细胞向正常情况下不存在ephrin-B2表达的体节间区域的迁移。CAGp-ephrin-B2 Tg小鼠在新生阶段因血管平滑肌细胞向升主动脉的募集缺陷而死于主动脉夹层动脉瘤。内皮细胞与周围间充质细胞之间的EphB/ephrin-B2信号传导在血管发生、血管生成和血管成熟中起着至关重要的作用。