Department of Biological Science, Florida State University, Tallahassee, FL 32306, USA.
Development. 2011 May;138(9):1737-45. doi: 10.1242/dev.059352. Epub 2011 Mar 29.
Multicellular development requires the correct spatial and temporal regulation of cell division and differentiation. These processes are frequently coordinated by the activities of various signaling pathways such as Notch signaling. From a screen for modifiers of Notch signaling in Drosophila we have identified the RNA helicase Belle, a recently described component of the RNA interference pathway, as an important regulator of the timing of Notch activity in follicle cells. We found that loss of Belle delays activation of Notch signaling, which results in delayed follicle cell differentiation and defects in the cell cycle. Because mutations in well-characterized microRNA components phenocopied the Notch defects observed in belle mutants, Belle might be functioning in the microRNA pathway in follicle cells. The effect of loss of microRNAs on Notch signaling occurs upstream of Notch cleavage, as expression of the constitutively active intracellular domain of Notch in microRNA-defective cells restored proper activation of Notch. Furthermore, we present evidence that the Notch ligand Delta is an important target of microRNA regulation in follicle cells and regulates the timing of Notch activation through cis inhibition of Notch. Here we have uncovered a complex regulatory process in which the microRNA pathway promotes Notch activation by repressing Delta-mediated inhibition of Notch in follicle cells.
多细胞发育需要细胞分裂和分化的正确时空调节。这些过程通常通过 Notch 信号等各种信号通路的活性来协调。我们从果蝇 Notch 信号的调节剂筛选中鉴定出 RNA 解旋酶 Belle,它是 RNA 干扰途径的一个新描述的组成部分,是滤泡细胞中 Notch 活性定时的重要调节因子。我们发现 Belle 的缺失会延迟 Notch 信号的激活,导致滤泡细胞分化延迟和细胞周期缺陷。由于微 RNA 成分的突变与 belle 突变体中观察到的 Notch 缺陷表型相同,Belle 可能在滤泡细胞中的微 RNA 途径中发挥作用。缺失 microRNAs 对 Notch 信号的影响发生在 Notch 切割的上游,因为在微 RNA 缺陷细胞中表达组成型活性的 Notch 细胞内结构域恢复了 Notch 的正确激活。此外,我们提出证据表明,Notch 配体 Delta 是滤泡细胞中 microRNA 调节的一个重要靶标,并通过 cis 抑制 Notch 来调节 Notch 的激活时间。在这里,我们揭示了一个复杂的调控过程,其中 microRNA 途径通过抑制 Delta 对 Notch 的抑制来促进 Notch 的激活。