Bach Erika A, Ekas Laura A, Ayala-Camargo Aidee, Flaherty Maria Sol, Lee Haeryun, Perrimon Norbert, Baeg Gyeong-Hun
Pharmacology Department, New York University School of Medicine, New York, NY 10016-6402, USA.
Gene Expr Patterns. 2007 Jan;7(3):323-31. doi: 10.1016/j.modgep.2006.08.003. Epub 2006 Aug 22.
JAK/STAT signaling is essential for a wide range of developmental processes in Drosophila melanogaster. The mechanism by which the JAK/STAT pathway contributes to these processes has been the subject of recent investigation. However, a reporter that reflects activity of the JAK/STAT pathway in all Drosophila tissues has not yet been developed. By placing a fragment of the Stat92E target gene Socs36E, which contains at least two putative Stat92E binding sites, upstream of GFP, we generated three constructs that can be used to monitor JAK/STAT pathway activity in vivo. These constructs differ by the number of Stat92E binding sites and the stability of GFP. The 2XSTAT92E-GFP and 10XSTAT92E-GFP constructs contain 2 and 10 Stat92E binding sites, respectively, driving expression of enhanced GFP, while 10XSTAT92E-DGFP drives expression of destabilized GFP. We show that these reporters are expressed in the embryo in an overlapping pattern with Stat92E protein and in tissues where JAK/STAT signaling is required. In addition, these reporters accurately reflect JAK/STAT pathway activity at larval stages, as their expression pattern overlaps that of the activating ligand unpaired in imaginal discs. Moreover, the STAT92E-GFP reporters are activated by ectopic JAK/STAT signaling. STAT92E-GFP fluorescence is increased in response to ectopic upd in the larval eye disc and mis-expression of the JAK kinase hopscotch in the adult fat body. Lastly, these reporters are specifically activated by Stat92E, as STAT92E-GFP reporter expression is lost cell-autonomously in stat92E homozygous mutant tissue. In sum, we have generated in vivo GFP reporters that accurately reflect JAK/STAT pathway activation in a variety of tissues. These reporters are valuable tools to further investigate and understand the role of JAK/STAT signaling in Drosophila.
JAK/STAT信号传导对于黑腹果蝇的广泛发育过程至关重要。JAK/STAT途径促成这些过程的机制一直是近期研究的主题。然而,尚未开发出一种能反映JAK/STAT途径在所有果蝇组织中活性的报告基因。通过将Stat92E靶基因Socs36E的一个片段(其包含至少两个假定的Stat92E结合位点)置于绿色荧光蛋白(GFP)上游,我们构建了三种可用于在体内监测JAK/STAT途径活性的构建体。这些构建体在Stat92E结合位点的数量和GFP的稳定性方面存在差异。2XSTAT92E-GFP和10XSTAT92E-GFP构建体分别包含2个和10个Stat92E结合位点,驱动增强型GFP的表达,而10XSTAT92E-DGFP驱动不稳定型GFP的表达。我们表明,这些报告基因在胚胎中以与Stat92E蛋白重叠的模式表达,并且在需要JAK/STAT信号传导的组织中表达。此外,这些报告基因准确反映了幼虫阶段的JAK/STAT途径活性,因为它们的表达模式与成虫盘内激活配体unpaired的表达模式重叠。此外,STAT92E-GFP报告基因被异位的JAK/STAT信号传导激活。幼虫眼盘中异位的upd以及成虫脂肪体中JAK激酶hopscotch的错误表达会使STAT92E-GFP荧光增加。最后,这些报告基因被Stat92E特异性激活,因为STAT92E-GFP报告基因的表达在stat92E纯合突变组织中细胞自主丧失。总之,我们已经构建了体内GFP报告基因,其能准确反映多种组织中JAK/STAT途径的激活。这些报告基因是进一步研究和理解JAK/STAT信号传导在果蝇中作用的有价值工具。