Holtzinger Audrey, Evans Todd
Department of Developmental and Molecular Biology, Albert Einstein College of Medicine, Bronx, NY 10461, USA.
Development. 2005 Sep;132(17):4005-14. doi: 10.1242/dev.01978. Epub 2005 Aug 3.
We have developed a loss-of-function model for Gata4 in zebrafish, in order to examine broadly its requirement for organogenesis. We show that the function of Gata4 in zebrafish heart development is well conserved with that in mouse, and that, in addition, Gata4 is required for development of the intestine, liver, pancreas and swim bladder. Therefore, a single transcription factor regulates the formation of many organs. Gata6 is a closely related transcription factor with an overlapping expression pattern. We show that zebrafish depleted of Gata6 show defects in liver bud growth similar to mouse Gata6 mutants and zebrafish Gata4 morphants, and that zebrafish embryos depleted of both Gata4 and Gata6 display an earlier block in liver development, and thus completely lack liver buds. Therefore, Gata4 and Gata6 have distinct non-redundant functions in cardiac morphogenesis, but are redundant for an early step of liver development. In addition, both Gata4 and Gata6 are essential and non-redundant for liver growth following initial budding.
我们构建了斑马鱼中Gata4的功能缺失模型,以广泛研究其在器官发生中的需求。我们发现,Gata4在斑马鱼心脏发育中的功能与在小鼠中高度保守,此外,Gata4对肠道、肝脏、胰腺和鳔的发育也是必需的。因此,单一转录因子可调控多个器官的形成。Gata6是一种与之密切相关且表达模式重叠的转录因子。我们发现,Gata6缺失的斑马鱼表现出与小鼠Gata6突变体和斑马鱼Gata4 morphants相似的肝芽生长缺陷,且同时缺失Gata4和Gata6的斑马鱼胚胎在肝脏发育中出现更早的阻滞,因此完全没有肝芽。所以,Gata4和Gata6在心脏形态发生中具有不同的非冗余功能,但在肝脏发育的早期步骤中是冗余的。此外,Gata4和Gata6对于肝芽形成后的肝脏生长都是必需且非冗余的。