Morel V, Lecourtois M, Massiani O, Maier D, Preiss A, Schweisguth F
Ecole Normale Supérieure, Unite Mixte de Recherche 8544, 46 rue d'Ulm, 75230, Cedex 05, Paris, France.
Curr Biol. 2001 May 15;11(10):789-92. doi: 10.1016/s0960-9822(01)00224-x.
Notch is the receptor for a conserved signaling pathway that regulates numerous cell fate decisions during development [1]. Signal transduction involves the presenilin-dependent intracellular processing of Notch and the nuclear translocation of the intracellular domain of Notch, NICD [2-6]. NICD associates with Suppressor of Hairless [Su(H)], a DNA binding protein, and Mastermind (Mam), a transcriptional coactivator [7-9]. In the absence of Notch signaling, Su(H) acts as a transcriptional repressor [10, 11]. Repression by Su(H) is relieved by the activation of Notch [12-16]. In the Drosophila embryo, this transcriptional switch from repression to activation is important for patterning the expression of the single-minded (sim) gene along the dorsoventral axis [12]. Here, we investigate the mechanisms by which Su(H) inhibits the expression of Notch target genes in Drosophila. We show that Hairless, an antagonist of Notch signaling [17-19], is required to repress the transcription of the sim gene. Hairless forms a DNA-bound complex with Su(H). Furthermore, it directly binds the Drosophila C-terminal Binding Protein (dCtBP), which acts as a transcriptional corepressor. The dCtBP binding motif of Hairless is essential for the function of Hairless in vivo. We propose that Hairless mediates transcriptional repression by Su(H) via the recruitment of dCtBP.
Notch是一种保守信号通路的受体,该信号通路在发育过程中调节众多细胞命运决定[1]。信号转导涉及Notch的早老素依赖性细胞内加工以及Notch细胞内结构域NICD的核转位[2-6]。NICD与DNA结合蛋白无翅毛状体抑制因子[Su(H)]以及转录共激活因子主调控因子(Mam)结合[7-9]。在没有Notch信号的情况下,Su(H)作为转录抑制因子发挥作用[10, 11]。Notch的激活可解除Su(H)的抑制作用[12-16]。在果蝇胚胎中,这种从抑制到激活的转录开关对于沿背腹轴调控单 minded(sim)基因的表达模式很重要[12]。在此,我们研究了Su(H)在果蝇中抑制Notch靶基因表达的机制。我们发现,无翅毛状体,一种Notch信号的拮抗剂[17-19],是抑制sim基因转录所必需的。无翅毛状体与Su(H)形成一种与DNA结合的复合物。此外,它直接结合果蝇C末端结合蛋白(dCtBP),该蛋白作为转录共抑制因子发挥作用。无翅毛状体的dCtBP结合基序对于其在体内的功能至关重要。我们提出,无翅毛状体通过招募dCtBP介导Su(H)的转录抑制作用。