Department of Chemistry, Louisiana State University, Baton Rouge, LA, 70803, United States.
Complex Carbohydrate Research Center, University of Georgia, Athens, GA, 30602, United States.
Protein Expr Purif. 2020 Oct;174:105681. doi: 10.1016/j.pep.2020.105681. Epub 2020 Jun 4.
Notch receptors have large extracellular domains containing up to 36 tandem epidermal growth factor-like (EGF) repeats, which facilitate cell signaling by binding ligands on neighboring cells. Notch receptors play major roles in a variety of developmental processes by controlling cell fate decisions. Each EGF repeat consists of about 40 amino acids with 3 conserved disulfide bonds. Many of the EGF repeats are modified by O-linked fucose glycans, and more than half have calcium-binding sites, but the sequences of the EGF repeats vary giving distinct roles to each repeat. EGF repeat 27 (EGF27) from mouse NOTCH1 is modified with O-fucose and is 1 of 7 repeats that is differentially modified by specific Fringe enzymes, which are known to regulate NOTCH1 activation and ligand binding. To better understand the role of EGF27 in NOTCH1 function and regulation, the 3-dimensional structures of EGF27 and its glycoforms are being pursued. E. coli cells were used to produce EGF27 in sufficient quantities for nuclear magnetic resonance analysis. Previous attempts to express the repeat alone and refold the repeat under a steady redox environment were unsuccessful due to low yields and extensive mixed-disulfide bond cross-linking. A new strategy using a cleavable maltose binding protein fusion tag increased the solubility and yield of EGF27. With the fusion tag, EGF27 was refolded to produce the correct disulfide bond arrangement, which was verified enzymatically with the glycosyltransferases, Protein O-fucosyltransferase 1 (POFUT1) and Lunatic Fringe (LFNG).
Notch 受体具有包含多达 36 个串联表皮生长因子样 (EGF) 重复的大型细胞外结构域,通过与相邻细胞上的配体结合来促进细胞信号转导。Notch 受体通过控制细胞命运决定,在多种发育过程中发挥主要作用。每个 EGF 重复由约 40 个氨基酸组成,具有 3 个保守的二硫键。许多 EGF 重复被 O-连接岩藻糖基化修饰,超过一半具有钙结合位点,但 EGF 重复的序列不同,赋予每个重复不同的作用。来自小鼠 NOTCH1 的 EGF 重复 27 (EGF27) 被 O-岩藻糖基化修饰,是被特定 Fringe 酶差异修饰的 7 个重复之一,这些酶已知可调节 NOTCH1 激活和配体结合。为了更好地理解 EGF27 在 NOTCH1 功能和调节中的作用,正在研究 EGF27 的三维结构及其糖型。使用大肠杆菌细胞生产足够数量的 EGF27 进行核磁共振分析。由于产量低和广泛的混合二硫键交联,以前尝试单独表达重复序列并在稳定的氧化还原环境下重新折叠重复序列的尝试都没有成功。一种使用可切割麦芽糖结合蛋白融合标签的新策略增加了 EGF27 的溶解度和产量。使用融合标签,EGF27 被重新折叠以产生正确的二硫键排列,这通过糖基转移酶 Protein O-fucosyltransferase 1 (POFUT1) 和 Lunatic Fringe (LFNG) 进行了酶促验证。