Mizuta Ken, Sakabe Masahide, Hashimoto Aya, Ioka Tomoko, Sakai Chihiro, Okumura Kazuki, Hattammaru Miwa, Fujita Masahide, Araki Mutsumi, Somekawa Satoshi, Saito Yoshihiko, Nakagawa Osamu
Laboratory for Cardiovascular System Research, Nara Medical University Advanced Medical Research Center, Kashihara, Nara, Japan.
Dev Dyn. 2015 Jan;244(1):31-42. doi: 10.1002/dvdy.24216. Epub 2014 Nov 7.
Endothelial-mesenchymal transformation (EndMT) is essential for endocardial cushion formation during cardiac morphogenesis. We recently identified Tmem100 as an endothelial gene indispensable for vascular development. In this study, we further investigated its roles for EndMT during atrioventricular canal (AVC) cushion formation.
Tmem100 was expressed in AVC endocardial cells, and Tmem100 null embryos showed severe EndMT defect in the AVC cushions. While calcineurin-dependent suppression of vascular endothelial growth factor (VEGF) expression in the AVC myocardium is important for EndMT, significant up-regulation of Vegfa expression was observed in Tmem100 null heart. EndMT impaired in Tmem100 null AVC explants was partially but significantly restored by the expression of constitutively-active calcineurin A, suggesting dysregulation of myocardial calcineurin-VEGF signaling in Tmem100 null heart. Moreover, Tmem100 null endocardial cells in explant culture did not show EndMT in response to the treatment with myocardium-derived growth factors, transforming growth factor β2 and bone morphogenetic protein 2, indicating involvement of an additional endocardial-specific abnormality in the mechanism of EndMT defect. The lack of NFATc1 nuclear translocation in endocardial cells of Tmem100 null embryos suggests impairment of endocardial calcium signaling.
The Tmem100 deficiency causes EndMT defect during AVC cushion formation possibly via disturbance of multiple calcium-related signaling events.
内皮-间充质转化(EndMT)对于心脏形态发生过程中心内膜垫的形成至关重要。我们最近鉴定出Tmem100是血管发育所必需的一种内皮基因。在本研究中,我们进一步研究了其在房室管(AVC)垫形成过程中对EndMT的作用。
Tmem100在AVC心内膜细胞中表达,Tmem100基因敲除胚胎在AVC垫中表现出严重的EndMT缺陷。虽然AVC心肌中钙调神经磷酸酶依赖性抑制血管内皮生长因子(VEGF)表达对EndMT很重要,但在Tmem100基因敲除心脏中观察到Vegfa表达显著上调。在Tmem100基因敲除的AVC外植体中受损的EndMT通过组成型活性钙调神经磷酸酶A的表达得到部分但显著的恢复,这表明Tmem100基因敲除心脏中心肌钙调神经磷酸酶-VEGF信号传导失调。此外,外植体培养中的Tmem100基因敲除心内膜细胞在用心肌来源的生长因子、转化生长因子β2和骨形态发生蛋白2处理后未表现出EndMT,表明EndMT缺陷机制中存在额外的心内膜特异性异常。Tmem100基因敲除胚胎的心内膜细胞中缺乏NFATc1核转位表明心内膜钙信号传导受损。
Tmem100缺陷可能通过干扰多个与钙相关的信号事件导致AVC垫形成过程中的EndMT缺陷。