Donovan M J, Hahn R, Tessarollo L, Hempstead B L
Department of Pathology, Children's Hospital, Boston, Massachusetts 02115, USA.
Nat Genet. 1996 Oct;14(2):210-3. doi: 10.1038/ng1096-210.
Neurotrophin 3 (Nt3) is one of five neurotrophin growth factors which shape the development of the nervous system by regulating neuronal survival and differentiation. Peripheral neuronal subpopulations expressing the TrkC receptor tyrosine kinase respond to Nt3 with enhanced survival, mitogenesis or cell migration and these neurons are lost in homozygous Nt3 null (-/-) mutant mice. The unexplained perinatal lethality in the Nt3-/- mice, however, suggests a wider function for this neurotrophin. Here we report that Nt3 is essential for the normal development of atria, ventricles, and cardiac outflow tracts. Histological and echocardiographic image analysis of Nt3-/- animals reveal severe cardiovascular abnormalities including atrial and ventricular septal defects, and tetralogy of Fallot, resembling some of the most common congenital malformations in humans. The observed defects are consistent with abnormalities in the survival and/or migration of cardiac neural crest early in embryogenesis and establish an essential role for neurotrophin 3 in regulating the development of the mammalian heart.
神经营养因子3(Nt3)是五种神经营养生长因子之一,通过调节神经元的存活和分化来塑造神经系统的发育。表达TrkC受体酪氨酸激酶的外周神经元亚群对Nt3有反应,表现为存活率提高、有丝分裂增强或细胞迁移,而这些神经元在纯合Nt3基因敲除(-/-)突变小鼠中缺失。然而,Nt3-/-小鼠中无法解释的围产期致死率表明这种神经营养因子具有更广泛的功能。在此我们报告,Nt3对心房、心室和心脏流出道的正常发育至关重要。对Nt3-/-动物的组织学和超声心动图图像分析显示出严重的心血管异常,包括房间隔和室间隔缺损以及法洛四联症,类似于人类一些最常见的先天性畸形。观察到的缺陷与胚胎发育早期心脏神经嵴存活和/或迁移异常一致,并确立了神经营养因子3在调节哺乳动物心脏发育中的重要作用。