Fossett N, Zhang Q, Gajewski K, Choi C Y, Kim Y, Schulz R A
Department of Biochemistry and Molecular Biology, The University of Texas M. D. Anderson Cancer Center, 1515 Holcombe Boulevard, Houston, TX 77030, USA.
Proc Natl Acad Sci U S A. 2000 Jun 20;97(13):7348-53. doi: 10.1073/pnas.97.13.7348.
Multitype zinc-finger proteins of the Friend of GATA/U-shaped (Ush) class function as transcriptional regulators of gene expression through their modulation of GATA factor activity. To better understand intrinsic properties of these proteins, we investigated the expression and function of the ush gene during Drosophila embryogenesis. ush is dynamically expressed in the embryo, including several cell types present within the mesoderm. The gene is active in the cardiogenic mesoderm, and a loss of function results in an overproduction of both cardial and pericardial cells, indicating a requirement for the gene in the formation of these distinct cardiac cell types. Conversely, ectopic expression of ush results in a decrease in the number of cardioblasts in the heart and the inhibition of a cardial cell enhancer normally regulated by the synergistic activity of the Pannier and Tinman cardiogenic factors. These findings suggest that, similar to its known function in thoracic bristle patterning, Ush functions in the control of heart cell specification through its modulation of Pannier transcriptional activity. ush is also required for mesodermal cell migration early in embryogenesis, where it shows a genetic interaction with the Heartless fibroblast growth factor receptor gene. Taken together, these results demonstrate a critical role for the Ush transcriptional regulator in several diverse processes of mesoderm differentiation and heart formation.
GATA之友/U型(Ush)类的多型锌指蛋白通过调节GATA因子活性,作为基因表达的转录调节因子发挥作用。为了更好地理解这些蛋白的内在特性,我们研究了果蝇胚胎发育过程中ush基因的表达和功能。ush在胚胎中动态表达,包括中胚层中的几种细胞类型。该基因在心脏中胚层中活跃,功能丧失会导致心肌细胞和心包细胞过度产生,表明该基因在这些不同心脏细胞类型的形成中是必需的。相反,ush的异位表达会导致心脏中成肌细胞数量减少,并抑制通常由Pannier和Tinman心脏发生因子的协同活性调节的心肌细胞增强子。这些发现表明,与它在胸毛模式形成中的已知功能类似,Ush通过调节Pannier转录活性,在心脏细胞特化的控制中发挥作用。ush在胚胎发育早期的中胚层细胞迁移中也是必需的,在那里它与无心脏成纤维细胞生长因子受体基因表现出遗传相互作用。综上所述,这些结果证明了Ush转录调节因子在中胚层分化和心脏形成的几个不同过程中起关键作用。