Chen Kang, Bai Hao, Liu Yanfeng, Hoyle Dixie L, Shen Wei-Feng, Wu Li-Qun, Wang Zack Z
Department of Cardiology, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200025, China.
J Cell Biochem. 2015 Mar;116(3):467-75. doi: 10.1002/jcb.25000.
Eph receptor (Eph)-ephrin signaling plays an important role in organ development and tissue regeneration. Bidirectional signaling of EphB4-ephrinB2 regulates cardiovascular development. To assess the role of EphB4-ephrinB2 signaling in cardiac lineage development, we utilized two GFP reporter systems in embryonic stem (ES) cells, in which the GFP transgenes were expressed in Nkx2.5(+) cardiac progenitor cells and in α-MHC(+) cardiomyocytes, respectively. We found that both EphB4 and ephrinB2 were expressed in Nkx2.5-GFP(+) cardiac progenitor cells, but not in α-MHC-GFP(+) cardiomyocytes during cardiac lineage differentiation of ES cells. An antagonist of EphB4, TNYL-RAW peptides, that block the binding of EphB4 and ephrinB2, impaired cardiac lineage development in ES cells. Inhibition of EphB4-ephrinB2 signaling at different time points during ES cell differentiation demonstrated that the interaction of EphB4 and ephrinB2 was required for the early stage of cardiac lineage development. Forced expression of human full-length EphB4 or intracellular domain-truncated EphB4 in EphB4-null ES cells was established to investigate the role of EphB4-forward signaling in ES cells. Interestingly, while full-length EphB4 was able to restore the cardiac lineage development in EphB4-null ES cells, the truncated EphB4 that lacks the intracellular domain of tyrosine kinase and PDZ motif failed to rescue the defect of cardiomyocyte development, suggesting that EphB4 intracellular domain is essential for the development of cardiomyocytes. Our study provides evidence that receptor-kinase-dependent EphB4-forward signaling plays a crucial role in the development of cardiac progenitor cells.
Eph受体(Eph)-ephrin信号传导在器官发育和组织再生中起着重要作用。EphB4-ephrinB2的双向信号传导调节心血管发育。为了评估EphB4-ephrinB2信号传导在心脏谱系发育中的作用,我们在胚胎干细胞(ES细胞)中使用了两种绿色荧光蛋白(GFP)报告系统,其中GFP转基因分别在Nkx2.5(+)心脏祖细胞和α-肌球蛋白重链(α-MHC)(+)心肌细胞中表达。我们发现,在ES细胞的心脏谱系分化过程中,EphB4和ephrinB2均在Nkx2.5-GFP(+)心脏祖细胞中表达,但不在α-MHC-GFP(+)心肌细胞中表达。EphB4的拮抗剂TNYL-RAW肽可阻断EphB4与ephrinB2的结合,损害ES细胞中的心脏谱系发育。在ES细胞分化的不同时间点抑制EphB4-ephrinB2信号传导表明,EphB4与ephrinB2的相互作用是心脏谱系发育早期所必需的。在EphB4基因缺失的ES细胞中建立人全长EphB4或细胞内结构域截短的EphB4的强制表达,以研究EphB4正向信号传导在ES细胞中的作用。有趣的是,虽然全长EphB4能够恢复EphB4基因缺失的ES细胞中的心脏谱系发育,但缺乏酪氨酸激酶细胞内结构域和PDZ基序的截短EphB4未能挽救心肌细胞发育的缺陷,这表明EphB4细胞内结构域对于心肌细胞的发育至关重要。我们的研究提供了证据,表明受体激酶依赖性的EphB4正向信号传导在心脏祖细胞的发育中起关键作用。