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用于探究蛋白质特异性糖基化的Skp1衍生糖肽的化学合成

Chemical Synthesis of a Glycopeptide Derived from Skp1 for Probing Protein Specific Glycosylation.

作者信息

Chinoy Zoeisha S, Schafer Christopher M, West Christopher M, Boons Geert-Jan

机构信息

Complex Carbohydrate Research Center and Department of Chemistry, University of Georgia, 315 Riverbend Road, Athens, GA 30602 (USA).

Department of Biochemistry and Molecular Biology and Oklahoma Center for Medical Glycobiology, University of Oklahoma Health Sciences Center, Oklahoma City, OK 73104 (USA).

出版信息

Chemistry. 2015 Aug 10;21(33):11779-87. doi: 10.1002/chem.201501598. Epub 2015 Jul 15.

Abstract

Skp1 is a cytoplasmic and nuclear protein, best known as an adaptor of the SCF family of E3-ubiquitin ligases that label proteins for their degradation. Skp1 in Dictyostelium is posttranslationally modified on a specific hydroxyproline (Hyp) residue by a pentasaccharide, which consists of a Fucα1,2-Galβ-1,3-GlcNAcα core, decorated with two α-linked Gal residues. A glycopeptide derived form Skp1 was prepared to characterize the α-galactosyltransferase (AgtA) that mediates the addition of the α-Gal moieties, and to develop antibodies suitable for tracking the trisaccharide isoform of Skp1 in cells. A strategy was developed for the synthesis of the core trisaccharide-Hyp based on the use of 2-naphthylmethyl (Nap) ethers as permanent protecting groups to allow late stage installation of the Hyp moiety. Tuning of glycosyl donor and acceptor reactivities was critical for achieving high yields and anomeric selectivities of glycosylations. The trisaccharide-Hyp moiety was employed for the preparation of the glycopeptide using microwave-assisted solid phase peptide synthesis. Enzyme kinetic studies revealed that trisaccharide-Hyp and trisaccharide-peptide are poorly recognized by AgtA, indicating the importance of context provided by the native Skp1 protein for engagement with the active site. The trisaccharide-peptide was a potent immunogen capable of generating a rabbit antiserum that was highly selective toward the trisaccharide isoform of full-length Skp1.

摘要

Skp1是一种存在于细胞质和细胞核中的蛋白质,作为E3泛素连接酶SCF家族的衔接蛋白而广为人知,该家族可标记蛋白质以便其降解。盘基网柄菌中的Skp1在一个特定的羟脯氨酸(Hyp)残基上进行翻译后修饰,修饰基团为一种五糖,其核心由Fucα1,2-Galβ-1,3-GlcNAcα组成,并带有两个α连接的Gal残基。制备了一种源自Skp1的糖肽,以表征介导α-Gal部分添加的α-半乳糖基转移酶(AgtA),并开发适用于追踪细胞中Skp1三糖异构体的抗体。基于使用2-萘甲基(Nap)醚作为永久性保护基团以允许后期安装Hyp部分,开发了一种合成核心三糖-Hyp的策略。调节糖基供体和受体的反应活性对于实现糖基化的高产率和异头选择性至关重要。使用微波辅助固相肽合成法,将三糖-Hyp部分用于制备糖肽。酶动力学研究表明,三糖-Hyp和三糖肽很难被AgtA识别,这表明天然Skp1蛋白提供的背景对于与活性位点结合的重要性。三糖肽是一种有效的免疫原,能够产生对全长Skp1的三糖异构体具有高度选择性的兔抗血清。

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