Ho Diana M, Pallavi S K, Artavanis-Tsakonas Spyros
Department of Cell Biology, Harvard Medical School, Boston, United States.
Elife. 2015 Jul 29;4:e05996. doi: 10.7554/eLife.05996.
Notch signaling controls a wide range of cell fate decisions during development and disease via synergistic interactions with other signaling pathways. Here, through a genome-wide genetic screen in Drosophila, we uncover a highly complex Notch-dependent genetic circuitry that profoundly affects proliferation and consequently hyperplasia. We report a novel synergistic relationship between Notch and either of the non-receptor tyrosine kinases Src42A and Src64B to promote hyperplasia and tissue disorganization, which results in cell cycle perturbation, JAK/STAT signal activation, and differential regulation of Notch targets. Significantly, the JNK pathway is responsible for the majority of the phenotypes and transcriptional changes downstream of Notch-Src synergy. We previously reported that Notch-Mef2 also activates JNK, indicating that there are commonalities within the Notch-dependent proliferation circuitry; however, the current data indicate that Notch-Src accesses JNK in a significantly different fashion than Notch-Mef2.
Notch信号通路在发育和疾病过程中通过与其他信号通路的协同相互作用,控制着广泛的细胞命运决定。在这里,通过在果蝇中进行全基因组遗传筛选,我们发现了一个高度复杂的Notch依赖性遗传回路,该回路深刻影响增殖并因此导致增生。我们报告了Notch与非受体酪氨酸激酶Src42A和Src64B中的任何一个之间存在一种新型的协同关系,以促进增生和组织紊乱,这会导致细胞周期扰动、JAK/STAT信号激活以及Notch靶标的差异调节。值得注意的是,JNK通路负责Notch-Src协同作用下游的大多数表型和转录变化。我们之前报道过Notch-Mef2也会激活JNK,这表明在Notch依赖性增殖回路中存在共性;然而,目前的数据表明Notch-Src与JNK的作用方式与Notch-Mef2明显不同。