Department of Angiogenesis and Cardiovascular Pathology, Max-Delbrueck-Center for Molecular Medicine (MDC), Berlin, Germany.
Development. 2011 May;138(10):1935-45. doi: 10.1242/dev.056861. Epub 2011 Apr 6.
Endodermal organogenesis requires a precise orchestration of cell fate specification and cell movements, collectively coordinating organ size and shape. In Caenorhabditis elegans, uncoordinated-53 (unc-53) encodes a neural guidance molecule that directs axonal growth. One of the vertebrate homologs of unc-53 is neuron navigator 3 (Nav3). Here, we identified a novel vertebrate neuron navigator 3 isoform in zebrafish, nav3a, and we provide genetic evidence in loss- and gain-of-function experiments showing its functional role in endodermal organogenesis during zebrafish embryogenesis. In zebrafish embryos, nav3a expression was initiated at 22 hpf in the gut endoderm and at 40 hpf expanded to the newly formed liver bud. Endodermal nav3a expression was controlled by Wnt2bb signaling and was independent of FGF and BMP signaling. Morpholino-mediated knockdown of nav3a resulted in a significantly reduced liver size, and impaired development of pancreas and swim bladder. In vivo time-lapse imaging of liver development in nav3a morphants revealed a failure of hepatoblast movement out from the gut endoderm during the liver budding stage, with hepatoblasts being retained in the intestinal endoderm. In hepatocytes in vitro, nav3a acts as a positive modulator of actin assembly in lamellipodia and filipodia extensions, allowing cellular movement. Knockdown of nav3a in vitro impeded hepatocyte movement. Endodermal-specific overexpression of nav3a in vivo resulted in additional ectopic endodermal budding beyond the normal liver and pancreatic budding sites. We conclude that nav3a is required for directing endodermal organogenesis involving coordination of endodermal cell behavior.
内胚层器官发生需要细胞命运特化和细胞运动的精确协调,共同协调器官的大小和形状。在秀丽隐杆线虫中,Uncoordinated-53 (unc-53) 编码一种神经导向分子,指导轴突生长。unc-53 的一个脊椎动物同源物是神经元导航器 3 (Nav3)。在这里,我们在斑马鱼中鉴定了一种新型脊椎动物神经元导航器 3 同工型,nav3a,并通过在体和离体功能获得和功能丧失实验提供了遗传证据,表明其在斑马鱼胚胎发生期间内胚层器官发生中的功能作用。在斑马鱼胚胎中,nav3a 表达在 22 hpf 时在内胚层肠中起始,并在 40 hpf 时扩展到新形成的肝芽。内胚层 nav3a 表达受 Wnt2bb 信号调控,与 FGF 和 BMP 信号无关。Nav3a 的 Morpholino 介导敲低导致肝大小显著减小,胰腺和鳔发育受损。在 nav3a 形态发生体中肝脏发育的体内延时成像显示,在肝芽形成阶段,肝母细胞从肠内胚层向外运动失败,肝母细胞保留在肠内胚层中。在体外的肝细胞中,nav3a 作为片状伪足和丝状伪足延伸中肌动蛋白组装的正调节剂,允许细胞运动。体外敲低 nav3a 会阻碍肝细胞运动。体内过表达 nav3a 导致额外的异位内胚层芽生超出正常的肝和胰腺芽生部位。我们得出结论,nav3a 是指导涉及内胚层细胞行为协调的内胚层器官发生所必需的。