McGlinn Edwina, Richman Joy M, Metzis Vicki, Town Liam, Butterfield Natalie C, Wainwright Brandon J, Wicking Carol
Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland, Australia.
Dev Dyn. 2008 Apr;237(4):1172-82. doi: 10.1002/dvdy.21508.
The NET/Nlz family of zinc finger transcription factors contribute to aspects of developmental growth and patterning across evolutionarily diverse species. To date, however, these molecules remain largely uncharacterized in mouse and chick. We previously reported that limb bud expression of Zfp503, the mouse orthologue of zebrafish nlz2/znf503, is dependent on Gli3. Here, we show that Zfp503/Znf503 is expressed in a restricted pattern during mouse and chick embryogenesis, with particularly dynamic expression in the developing limbs, face, somites, and brain. We also add to our previous data on Gli3 regulation by showing that the anterior domain of Zfp503 expression in the mouse limb is responsive to genetic and nongenetic manipulation of hedgehog signaling. Finally, we demonstrate that posterior expression of Znf503 in the chick limb is responsive to bone morphogenetic protein (BMP) signaling, indicating that Zfp503/Znf503 may act at the nexus of multiple signaling pathways in development.
锌指转录因子的NET/Nlz家族在进化上不同的物种的发育生长和模式形成方面发挥作用。然而,迄今为止,这些分子在小鼠和鸡中仍基本未被表征。我们之前报道过,斑马鱼nlz2/znf503的小鼠同源物Zfp503在肢芽中的表达依赖于Gli3。在这里,我们表明Zfp503/Znf503在小鼠和鸡胚胎发育过程中以受限模式表达,在发育中的四肢、面部、体节和大脑中表达尤其动态。我们还通过表明小鼠肢体中Zfp503表达的前部区域对刺猬信号通路的遗传和非遗传操纵有反应,补充了我们之前关于Gli3调控的数据。最后,我们证明鸡肢体中Znf503的后部表达对骨形态发生蛋白(BMP)信号通路有反应,表明Zfp503/Znf503可能在发育中的多个信号通路的交汇点起作用。