Ikeuchi Takeshi, Sisodia Sangram S
Department of Neurobiology, Pharmacology, and Physiology, The University of Chicago, Illinois 60637, USA.
J Biol Chem. 2003 Mar 7;278(10):7751-4. doi: 10.1074/jbc.C200711200. Epub 2003 Jan 24.
The evolutionary conserved Notch signaling pathway is involved in cell fate specification and mediated by molecular interactions between the Notch receptors and the Notch ligands, Delta, Serrate, and Jagged. In this report, we demonstrate that like Notch, Delta1 and Jagged2 are subject to presenilin (PS)-dependent, intramembranous "gamma-secretase" processing, resulting in the production of soluble intracellular derivatives. Moreover, and paralleling the observation that expression of familial Alzheimer's disease-linked mutant PS1 compromises production of Notch S3/NICD, we show that the PS-dependent production of Delta1 cytoplasmic derivatives are also reduced in cells expressing mutant PS1. These studies led us to conclude that a similar molecular apparatus is responsible for intramembranous processing of Notch and it's ligands. To assess the potential role of the cytoplasmic derivative on nuclear transcriptional events, we expressed a Delta1-Gal4VP16 chimera and demonstrated marked transcriptional stimulation of a luciferase-based reporter. Our findings offer the proposal that Delta1 and Jagged2 play dual roles as activators of Notch receptor signaling and as receptors that mediate nuclear signaling events via gamma-secretase-generated cytoplasmic domains.
进化保守的Notch信号通路参与细胞命运的决定,由Notch受体与Notch配体Delta、Serrate和Jagged之间的分子相互作用介导。在本报告中,我们证明,与Notch一样,Delta1和Jagged2也会经历早老素(PS)依赖的膜内“γ-分泌酶”加工,产生可溶性细胞内衍生物。此外,与家族性阿尔茨海默病相关突变体PS1的表达会损害Notch S3/NICD的产生这一观察结果相似,我们发现,在表达突变体PS1的细胞中,Delta1细胞质衍生物的PS依赖产生也会减少。这些研究使我们得出结论,类似的分子机制负责Notch及其配体的膜内加工。为了评估细胞质衍生物对核转录事件的潜在作用,我们表达了一种Delta1-Gal4VP16嵌合体,并证明对基于荧光素酶的报告基因有显著的转录刺激作用。我们的研究结果表明,Delta1和Jagged2作为Notch受体信号的激活剂以及通过γ-分泌酶产生的细胞质结构域介导核信号事件的受体发挥双重作用。