Hallaq Haifa, Pinter Emese, Enciso Josephine, McGrath James, Zeiss Caroline, Brueckner Martina, Madri Joseph, Jacobs Harris C, Wilson Christine M, Vasavada Hemaxi, Jiang Xiaobing, Bogue Clifford W
Department of Pediatrics, Yale University School of Medicine, 464 Congress Avenue, New Haven, CT, 06519-1361, USA.
Development. 2004 Oct;131(20):5197-209. doi: 10.1242/dev.01393.
The homeobox gene Hhex has recently been shown to be essential for normal liver, thyroid and forebrain development. Hhex(-/-) mice die by mid-gestation (E14.5) and the cause of their early demise remains unclear. Because Hhex is expressed in the developing blood islands at E7.0 in the endothelium of the developing vasculature and heart at E9.0-9.5, and in the ventral foregut endoderm at E8.5-9.0, it has been postulated to play a critical role in heart and vascular development. We show here, for the first time, that a null mutation of Hhex results in striking abnormalities of cardiac and vascular development which include: (1) defective vasculogenesis, (2) hypoplasia of the right ventricle, (3) overabundant endocardial cushions accompanied by ventricular septal defects, outflow tract abnormalities and atrio-ventricular (AV) valve dysplasia and (4) aberrant development of the compact myocardium. The dramatic enlargement of the endocardial cushions in the absence of Hhex is due to decreased apoptosis and dysregulated epithelial-mesenchymal transformation (EMT). Interestingly, vascular endothelial growth factor A (Vegfa) levels in the hearts of Hhex(-/-) mice were elevated as much as three-fold between E9.5 and E11.5, and treatment of cultured Hhex(-/-) AV explants with truncated soluble Vegfa receptor 1, sFlt-1, an inhibitor of Vegf signaling, completely abolished the excessive epithelial-mesenchymal transformation seen in the absence of Hhex. Therefore, Hhex expression in the ventral foregut endoderm and/or the endothelium is necessary for normal cardiovascular development in vivo, and one function of Hhex is to repress Vegfa levels during development.
同源框基因Hhex最近被证明对正常肝脏、甲状腺和前脑发育至关重要。Hhex基因敲除(Hhex(-/-))小鼠在妊娠中期(E14.5)死亡,其早期死亡原因尚不清楚。由于Hhex在E7.0时于发育中的血岛中表达,在E9.0 - 9.5时于发育中的脉管系统和心脏的内皮中表达,以及在E8.5 - 9.0时于腹侧前肠内胚层中表达,因此推测它在心脏和血管发育中起关键作用。我们在此首次表明,Hhex的无效突变会导致心脏和血管发育出现显著异常,包括:(1)血管生成缺陷;(2)右心室发育不全;(3)心内膜垫过多,伴有室间隔缺损、流出道异常和房室(AV)瓣发育异常;(4)致密心肌发育异常。在缺乏Hhex的情况下,心内膜垫显著增大是由于细胞凋亡减少和上皮 - 间充质转化(EMT)失调所致。有趣的是,在E9.5至E11.5期间,Hhex(-/-)小鼠心脏中的血管内皮生长因子A(Vegfa)水平升高了多达三倍,用截短的可溶性Vegfa受体1(sFlt-1)(一种Vegf信号抑制剂)处理培养的Hhex(-/-)房室外植体,完全消除了在缺乏Hhex时出现的过度上皮 - 间充质转化。因此,腹侧前肠内胚层和/或内皮中的Hhex表达对于体内正常心血管发育是必需的,并且Hhex的一个功能是在发育过程中抑制Vegfa水平。