Leibniz Institut für Alternsforschung-Fritz Lipmann Institut, 07745 Jena, Germany.
Institut für Biochemie und Biophysik, Friedrich Schiller Universität Jena, 07745 Jena, Germany.
J Biol Chem. 2019 Aug 2;294(31):11741-11750. doi: 10.1074/jbc.RA118.006357. Epub 2019 Jun 11.
The Notch receptor is a key mediator of developmental programs and cell-fate decisions. Imbalanced Notch signaling leads to developmental disorders and cancer. To fully characterize the Notch signaling pathway and exploit it in novel therapeutic interventions, a comprehensive view on the regulation and requirements of Notch signaling is needed. Notch is regulated at different levels, ranging from ligand binding, stability to endocytosis. Using an array of different techniques, including reporter gene assays, immunocytochemistry, and ChIP-qPCR we show here, to the best of our knowledge for the first time, regulation of Notch signaling at the level of the nuclear pore. We found that the nuclear pore protein Nup214 (nucleoporin 214) and its interaction partner Nup88 negatively regulate Notch signaling and in zebrafish. In mammalian cells, loss of Nup88/214 inhibited nuclear export of recombination signal-binding protein for immunoglobulin κJ region (RBP-J), the DNA-binding component of the Notch pathway. This inhibition increased binding of RBP-J to its cognate promoter regions, resulting in increased downstream Notch signaling. Interestingly, we also found that NUP214 fusion proteins, causative for certain cases of T-cell acute lymphatic leukemia, potentially contribute to tumorigenesis via a Notch-dependent mechanism. In summary, the nuclear pore components Nup88/214 suppress Notch signaling , and in zebrafish, nuclear RBP-J levels are rate-limiting factors for Notch signaling in mammalian cells, and regulation of nucleocytoplasmic transport of RBP-J may contribute to fine-tuning Notch activity in cells.
Notch 受体是发育程序和细胞命运决定的关键介质。Notch 信号的失衡导致发育障碍和癌症。为了全面描述 Notch 信号通路并将其应用于新的治疗干预中,需要全面了解 Notch 信号的调节和要求。 Notch 的调节涉及多个层次,从配体结合、稳定性到内吞作用。在这里,我们使用一系列不同的技术,包括报告基因分析、免疫细胞化学和 ChIP-qPCR,首次展示了 Notch 信号在核孔水平的调节。我们发现核孔蛋白 Nup214(核孔蛋白 214)及其相互作用伙伴 Nup88 负调控 Notch 信号,在斑马鱼中。在哺乳动物细胞中,Nup88/214 的缺失抑制了 RBP-J(Notch 途径的 DNA 结合成分)的重组信号结合蛋白的核输出。这种抑制增加了 RBP-J 与其同源启动子区域的结合,导致下游 Notch 信号增加。有趣的是,我们还发现,T 细胞急性淋巴细胞白血病的某些情况下导致的 NUP214 融合蛋白可能通过 Notch 依赖的机制促进肿瘤发生。总之,核孔成分 Nup88/214 抑制 Notch 信号,在斑马鱼中,核 RBP-J 水平是哺乳动物细胞 Notch 信号的限速因素,RBP-J 的核质转运调节可能有助于细胞中 Notch 活性的微调。