Department of Biochemistry, University of Oxford, Oxford OX1 3QU, United Kingdom;
Department of Biochemistry and Cell Biology, Stony Brook University, Stony Brook, NY 11794-5215; and.
Proc Natl Acad Sci U S A. 2014 May 20;111(20):7290-5. doi: 10.1073/pnas.1319683111. Epub 2014 May 6.
The Notch signaling pathway is essential for many aspects of development, cell fate determination, and tissue homeostasis. Notch signaling can be modulated by posttranslational modifications to the Notch receptor, which are known to alter both ligand binding and receptor activation. We have modified the ligand-binding region (EGF domains 11-13) of human Notch1 (hN1) with O-fucose and O-glucose glycans and shown by flow cytometry and surface plasmon resonance that the Fringe-catalyzed addition of GlcNAc to the O-fucose at T466 in EGF12 substantially increases binding to Jagged1 and Delta-like 1 (DLL1) ligands. We have subsequently determined the crystal structures of EGF domains 11-13 of hN1 modified with either the O-fucose monosaccharide or the GlcNAc-fucose disaccharide at T466 of EGF12 and observed no change in backbone structure for each variant. Collectively, these data demonstrate a role for GlcNAc in modulating the ligand-binding site in hN1 EGF12, resulting in an increased affinity of this region for ligands Jagged1 and DLL1. We propose that this finding explains the Fringe-catalyzed enhancement of Notch-Delta signaling observed in flies and humans, but suggest that the inhibitory effect of Fringe on Jagged/Serrate mediated signaling involves other regions of Notch.
Notch 信号通路对于发育、细胞命运决定和组织稳态的许多方面都至关重要。Notch 信号可以通过 Notch 受体的翻译后修饰来调节,这些修饰已知会改变配体结合和受体激活。我们已经用人 Notch1(hN1)的 Notch 受体的配体结合区(EGF 结构域 11-13)进行了 O-岩藻糖和 O-葡萄糖聚糖的修饰,并通过流式细胞术和表面等离子体共振表明,Frunge 催化的 GlcNAc 加在 EGF12 中的 T466 上的 O-岩藻糖大大增加了与 Jagged1 和 Delta-like 1(DLL1)配体的结合。随后,我们确定了在 EGF12 中的 T466 处用 O-岩藻糖单糖或 GlcNAc-岩藻糖二糖修饰的 hN1 的 EGF 结构域 11-13 的晶体结构,并且每个变体的骨架结构均未发生变化。总的来说,这些数据表明 GlcNAc 在调节 hN1 EGF12 的配体结合位点方面发挥了作用,从而使该区域与配体 Jagged1 和 DLL1 的亲和力增加。我们提出,这一发现解释了在果蝇和人类中观察到的 Fringe 催化的 Notch-Delta 信号增强,但表明 Fringe 对 Jagged/Serrate 介导的信号的抑制作用涉及 Notch 的其他区域。