对来自 POFUT1 S162L 患者成纤维细胞的内源性 NOTCH1 的分析揭示了 EGF12 上的 O 型岩藻糖修饰在人类发育过程中的重要性。

IF 3.4 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Kenjiroo Matsumoto, Kelvin B Luther, Robert S Haltiwanger
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引用次数: 0

摘要

NOTCH1(N1)是一种跨膜受体,与对立细胞上的膜系配体相互作用,介导许多细胞命运决定所需的细胞-细胞直接相互作用。蛋白O-岩藻糖基转移酶1(POFUT1)将O-岩藻糖添加到NOTCH1胞外结构域中的表皮生长因子(EGF)样重复序列上,这是转运和信号激活所必需的。我们以前曾发现,POFUT1 S162L 会导致一名患者丧失 90% 的 POFUT1 活性并出现全面发育缺陷;然而,POFUT1 导致这些症状的机制仍不清楚。与对照组相比,POFUT1 S162L 患者成纤维细胞表面的 N1 数量相当,但 DLL1 配体结合减少了 60%,JAG1 配体结合减少了 70%。为了确定 POFUT1 S162L 患者成纤维细胞中 N1 上的 O-岩藻糖减少是否是造成这些影响的原因,我们从对照组和患者成纤维细胞中免疫纯化了内源性 N1,并使用质谱糖蛋白组学方法分析了 O-岩藻糖基化。N1 的 EGF8 至 EGF12 构成配体结合域,EGF8 和 EGF12 上的 O-岩藻糖与配体发生物理作用以增强亲和力。对来自 POFUT1 S162L 患者成纤维细胞的 N1 进行糖蛋白质组学研究发现,除了 EGF9 上的 O-岩藻糖大量减少和 EGF12 上的 O-岩藻糖完全缺失外,所有分析位点的岩藻糖基化水平均为 WT。众所周知,EGF12上O-岩藻糖的缺失会对N1的活性产生重大影响,这或许可以解释在POFUT1 S162L患者身上观察到的症状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of endogenous NOTCH1 from POFUT1 S162L patient fibroblasts reveals the importance of the O-fucose modification on EGF12 in human development.

NOTCH1 is a transmembrane receptor interacting with membrane-tethered ligands on opposing cells that mediate the direct cell-cell interaction necessary for many cell fate decisions. Protein O-fucosyltransferase 1 (POFUT1) adds O-fucose to Epidermal Growth Factor (EGF)-like repeats in the NOTCH1 extracellular domain, which is required for trafficking and signaling activation. We previously showed that POFUT1 S162L caused a 90% loss of POFUT1 activity and global developmental defects in a patient; however, the mechanism by which POFUT1 contributes to these symptoms is still unclear. Compared to controls, POFUT1 S162L patient fibroblast cells had an equivalent amount of NOTCH1 on the cell surface but showed a 60% reduction of DLL1 ligand binding and a 70% reduction in JAG1 ligand binding. To determine if the reduction of O-fucose on NOTCH1 in POFUT1 S162L patient fibroblasts was the cause of these effects, we immunopurified endogenous NOTCH1 from control and patient fibroblasts and analyzed O-fucosylation using mass spectral glycoproteomics methods. NOTCH1 EGF8 to EGF12 comprise the ligand binding domain, and O-fucose on EGF8 and EGF12 physically interact with ligands to enhance affinity. Glycoproteomics of NOTCH1 from POFUT1 S162L patient fibroblasts showed WT fucosylation levels at all sites analyzed except for a large decrease at EGF9 and the complete absence of O-fucose at EGF12. Since the loss of O-fucose on EGF12 is known to have significant effects on NOTCH1 activity, this may explain the symptoms observed in the POFUT1 S162L patient.

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来源期刊
Glycobiology
Glycobiology 生物-生化与分子生物学
CiteScore
7.50
自引率
4.70%
发文量
73
审稿时长
3 months
期刊介绍: Established as the leading journal in the field, Glycobiology provides a unique forum dedicated to research into the biological functions of glycans, including glycoproteins, glycolipids, proteoglycans and free oligosaccharides, and on proteins that specifically interact with glycans (including lectins, glycosyltransferases, and glycosidases). Glycobiology is essential reading for researchers in biomedicine, basic science, and the biotechnology industries. By providing a single forum, the journal aims to improve communication between glycobiologists working in different disciplines and to increase the overall visibility of the field.
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