Hayward Penny, Brennan Keith, Sanders Phil, Balayo Tina, DasGupta Ramanuj, Perrimon Norbert, Martinez Arias Alfonso
Department of Genetics, University of Cambridge, Cambridge CB2 3EH, UK.
Development. 2005 Apr;132(8):1819-30. doi: 10.1242/dev.01724. Epub 2005 Mar 16.
The establishment and stability of cell fates during development depend on the integration of multiple signals, which ultimately modulate specific patterns of gene expression. While there is ample evidence for this integration at the level of gene regulatory sequences, little is known about its operation at other levels of cellular activity. Wnt and Notch signalling are important elements of the circuitry that regulates gene expression in development and disease. Genetic analysis has suggested that in addition to convergence on the transcription of specific genes, there are modulatory cross-regulatory interactions between these signalling pathways. We report that the nodal point of these interactions is an activity of Notch that regulates the activity and the amount of the active/oncogenic form of Armadillo/beta-catenin. This activity of Notch is independent of that induced upon cleavage of its intracellular domain and which mediates transcription through Su(H)/CBF1. The modulatory function of Notch described here, contributes to the establishment of a robust threshold for Wnt signalling which is likely to play important roles in both normal and pathological situations.
细胞命运在发育过程中的建立和稳定取决于多种信号的整合,这些信号最终调节特定的基因表达模式。虽然在基因调控序列水平上有充分证据证明这种整合,但对于其在细胞活动其他水平上的运作却知之甚少。Wnt和Notch信号通路是在发育和疾病中调节基因表达的重要电路元件。遗传分析表明,除了在特定基因转录上的汇聚外,这些信号通路之间还存在调节性交叉调控相互作用。我们报告称,这些相互作用的节点是Notch的一种活性,它调节犰狳蛋白/β-连环蛋白的活性形式/致癌形式的活性和数量。Notch的这种活性独立于其细胞内结构域裂解后诱导的活性,后者通过Su(H)/CBF1介导转录。这里描述的Notch的调节功能有助于建立一个强大的Wnt信号阈值,这可能在正常和病理情况下都发挥重要作用。