Yu X, Riese J, Eresh S, Bienz M
Laboratory of Molecular Biology, Cambridge, UK.
EMBO J. 1998 Dec 1;17(23):7021-32. doi: 10.1093/emboj/17.23.7021.
Extracellular signals can act at different threshold levels to elicit distinct transcriptional and cellular responses. Here, we examine the transcriptional regulation of the Wingless target gene Ultrabithorax (Ubx) in the embryonic midgut of Drosophila. Our previous work showed that Ubx transcription is stimulated in this tissue by Dpp and by low levels of Wingless signalling. We now find that high levels of Wingless signalling can repress Ubx transcription. The response sequence within the Ubx midgut enhancer required for this repression coincides with a motif required for transcriptional stimulation of Dpp, namely a tandem of binding sites for the Dpp-transducing protein, Mad. Indeed, Wingless-mediated repression depends on low levels of Dpp, although apparently not on Mad itself. In contrast, high levels of Dpp signalling antagonize Wingless-mediated repression. This suggests that transcriptional activation of Ubx is subject to competition between Dpp-activated Mad and another Smad whose function as a transcriptional repressor depends on high Wg signalling. Finally, we show that Wingless can repress its own expression via an autorepressive feedback loop that results in a change of the Wingless signalling profile during development.
细胞外信号可在不同阈值水平发挥作用,以引发不同的转录和细胞反应。在此,我们研究了果蝇胚胎中肠中无翅靶基因超双胸(Ubx)的转录调控。我们之前的工作表明,在该组织中,Ubx转录受到Dpp和低水平无翅信号的刺激。我们现在发现,高水平的无翅信号可抑制Ubx转录。这种抑制所需的Ubx中肠增强子内的反应序列与Dpp转录刺激所需的基序一致,即Dpp转导蛋白Mad的串联结合位点。实际上,无翅介导的抑制依赖于低水平的Dpp,尽管显然不依赖于Mad本身。相反,高水平的Dpp信号拮抗无翅介导的抑制。这表明Ubx的转录激活受到Dpp激活的Mad与另一种Smad之间竞争的影响,后者作为转录抑制因子的功能依赖于高无翅信号。最后,我们表明无翅可通过自抑制反馈环抑制其自身表达,这导致发育过程中无翅信号谱的改变。