Miesfeld Joel B, Link Brian A
Department of Cell Biology, Neurobiology and Anatomy, Medical College of Wisconsin, WI 53226, United States; Medical College of Wisconsin, WI 53226, United States.
Department of Cell Biology, Neurobiology and Anatomy, Medical College of Wisconsin, WI 53226, United States; Medical College of Wisconsin, WI 53226, United States.
Mech Dev. 2014 Aug;133:177-88. doi: 10.1016/j.mod.2014.02.003. Epub 2014 Feb 19.
To investigate the role of Hippo pathway signaling during vertebrate development transgenic zebrafish lines were generated and validated to dynamically monitor and manipulate Yap/Taz-Tead activity. Spatial and temporal analysis of Yap/Taz-Tead activity suggested the importance of Hippo signaling during cardiac precursor migration and other developmental processes. When the transcriptional co-activators, Yap and Taz were restricted from interacting with DNA-binding Tead transcription factors through expression of a dominant negative transgene, cardiac precursors failed to migrate completely to the midline resulting in strong cardia bifida. Yap/Taz-Tead activity reporters also allowed us to investigate upstream and downstream factors known to regulate Hippo signaling output in Drosophila. While Crumbs mutations in Drosophila eye disc epithelia increase nuclear translocation and activity of Yorkie (the fly homolog of Yap/Taz), zebrafish crb2a mutants lacked nuclear Yap positive cells and down-regulated Yap/Taz-Tead activity reporters in the eye epithelia, despite the loss of apical-basal cell polarity in those cells. However, as an example of evolutionary conservation, the Tondu-domain containing protein Vestigial-like 4b (Vgll4b) was found to down-regulate endogenous Yap/Taz-Tead activity in the retinal pigment epithelium, similar to Drosophila Tgi in imaginal discs. In conclusion, the Yap/Taz-Tead activity reporters revealed the dynamics of Yap/Taz-Tead signaling and novel insights into Hippo pathway regulation for vertebrates. These studies highlight the utility of this transgenic tool-suite for ongoing analysis into the mechanisms of Hippo pathway regulation and the consequences of signaling output.
为了研究Hippo信号通路在脊椎动物发育过程中的作用,构建并验证了转基因斑马鱼品系,以动态监测和操纵Yap/Taz-Tead活性。对Yap/Taz-Tead活性的时空分析表明,Hippo信号在心脏前体细胞迁移和其他发育过程中具有重要作用。当通过表达显性负转基因限制转录共激活因子Yap和Taz与DNA结合的Tead转录因子相互作用时,心脏前体细胞无法完全迁移到中线,导致严重的心脏分裂。Yap/Taz-Tead活性报告基因还使我们能够研究已知调节果蝇中Hippo信号输出的上游和下游因子。虽然果蝇眼盘上皮细胞中的Crumbs突变会增加Yorkie(Yap/Taz的果蝇同源物)的核转位和活性,但斑马鱼crb2a突变体缺乏核Yap阳性细胞,并且尽管这些细胞中顶端-基部细胞极性丧失,但眼上皮细胞中的Yap/Taz-Tead活性报告基因表达下调。然而,作为进化保守性的一个例子,发现含有Tondu结构域的蛋白质Vestigial-like 4b(Vgll4b)在视网膜色素上皮中下调内源性Yap/Taz-Tead活性,类似于果蝇成虫盘中的Tgi。总之,Yap/Taz-Tead活性报告基因揭示了Yap/Taz-Tead信号的动态变化以及对脊椎动物Hippo信号通路调控的新见解。这些研究突出了这种转基因工具套件在持续分析Hippo信号通路调控机制和信号输出后果方面的实用性。