Decker Kimberly, Goldman Devorah C, Grasch Catherine L, Sussel Lori
Program in Molecular Biology, Department of Biochemistry and Molecular Genetics, University of Colorado at Denver Health Sciences Center, Aurora, CO 80045, USA.
Dev Biol. 2006 Oct 15;298(2):415-29. doi: 10.1016/j.ydbio.2006.06.046. Epub 2006 Jul 4.
Gata4, Gata5, and Gata6 represent a subfamily of zinc-finger transcriptional regulators that are important in the development and differentiation of numerous tissues, including many endodermally-derived organs. We demonstrate that Gata4 and Gata6 have overlapping expression patterns in the early pancreatic epithelium. Later, Gata4 becomes restricted to exocrine tissue and Gata6 becomes restricted to a subset of endocrine cells. In addition, we show Gata6, but not Gata4, physically interacts with Nkx2.2, an essential islet transcription factor. To begin determining the roles that Gata4 and Gata6 play during pancreatic development, we expressed Gata4-Engrailed and Gata6-Engrailed dominant repressor fusion proteins in the pancreatic epithelium and in the islet. At e17.5, transgenic Gata6-Engrailed embryos exhibit two distinct phenotypes: a complete absence of pancreas or a reduction in pancreatic tissue. In the embryos that do form pancreas, there is a significant reduction of all pancreatic cell types, with the few differentiated endocrine cells clustered within, or in close proximity to, enlarged ductal structures. Conversely, the majority of transgenic Gata4-Engrailed embryos do not have a pancreatic phenotype. This study suggests that Gata6 is an important regulator of pancreas specification.
Gata4、Gata5和Gata6代表锌指转录调节因子的一个亚家族,它们在包括许多内胚层来源器官在内的众多组织的发育和分化中起重要作用。我们证明,Gata4和Gata6在胰腺上皮早期具有重叠的表达模式。后来,Gata4局限于外分泌组织,Gata6局限于一部分内分泌细胞。此外,我们发现Gata6而非Gata4与胰岛必需转录因子Nkx2.2发生物理相互作用。为了开始确定Gata4和Gata6在胰腺发育过程中所起的作用,我们在胰腺上皮和胰岛中表达了Gata4-Engrailed和Gata6-Engrailed显性阻遏融合蛋白。在胚胎期17.5天时,转基因Gata6-Engrailed胚胎表现出两种不同的表型:胰腺完全缺失或胰腺组织减少。在确实形成胰腺的胚胎中,所有胰腺细胞类型均显著减少,少数分化的内分泌细胞聚集在扩大的导管结构内或其附近。相反,大多数转基因Gata4-Engrailed胚胎没有胰腺表型。这项研究表明,Gata6是胰腺特化的重要调节因子。