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功能性新糖肽:一类具有基于核心2的O-聚糖和复合型N-聚糖链的新型MUC1糖蛋白模型的合成与表征

Functional neoglycopeptides: synthesis and characterization of a new class of MUC1 glycoprotein models having core 2-based O-glycan and complex-type N-glycan chains.

作者信息

Matsushita Takahiko, Sadamoto Reiko, Ohyabu Naoki, Nakata Hideki, Fumoto Masataka, Fujitani Naoki, Takegawa Yasuhiro, Sakamoto Takeshi, Kurogochi Masaki, Hinou Hiroshi, Shimizu Hiroki, Ito Takaomi, Naruchi Kentarou, Togame Hiroko, Takemoto Hiroshi, Kondo Hirosato, Nishimura Shin-Ichiro

机构信息

Division of Advanced Chemical Biology, Graduate School of Life Science, Frontier Research Center for the Post-Genome Science and Technology, Hokkaido University, N21, W11, Kita-ku, Sapporo 001-0021, Japan.

出版信息

Biochemistry. 2009 Nov 24;48(46):11117-33. doi: 10.1021/bi901557a.

Abstract

An efficient protocol for the construction of MUC1-related glycopeptide analogues having complex O-glycan and N-glycan chains was established by integrating chemical and enzymatic approaches on the functional polymer platforms. We demonstrated the feasibility of sortase A-mediated ligation between two glycopeptide segments by tagging with signal peptides, LPKTGLR and GG, at each C- or N-terminal position. Structural analysis of the macromolecular N,O-glycopeptides was performed by means of ESI-TOFMS (MS/MS) equipped with an electron-captured dissociation device. Immunological assay using MUC1 glycopeptides synthesized in this study revealed that N-glycosylation near the antigenic O-glycosylated PDTR motif did not disturb the interaction between the anti-MUC1 monoclonal antibody and this crucial O-glycopeptide moiety. NMR study indicated that the N-terminal immunodominant region [Ala-Pro-Asp-Thr(O-glycan)-Arg] forms an inverse gamma-turn-like structure, while the C-terminal region composed of N-glycopeptide and linker SrtA-peptide was proved to be an independently random structure. These results indicate that the bulky O- and N-glycan chains can function independently as disease-relevant epitopes and ligands for carbohydrate-binding proteins, when both are combined by an artificial intervening peptide having a possible effect of separating N- and C-terminal regions. The present strategy will greatly facilitate rapid synthesis of multiply functionalized complex neoglycopeptides as new types of convenient tools or models for the investigation of thhe structure-function relationship of various glycoproteins and development of novel class glycopeptide-based biopharmaceuticals, drug delivery systems, and biomedical materials.

摘要

通过在功能聚合物平台上整合化学和酶促方法,建立了一种构建具有复杂O-聚糖和N-聚糖链的MUC1相关糖肽类似物的有效方案。我们通过在每个C或N末端位置用信号肽LPKTGLR和GG进行标记,证明了分选酶A介导的两个糖肽片段之间连接的可行性。通过配备电子捕获解离装置的ESI-TOFMS(MS/MS)对大分子N,O-糖肽进行结构分析。使用本研究中合成的MUC1糖肽进行的免疫分析表明,抗原性O-糖基化PDTR基序附近的N-糖基化不会干扰抗MUC1单克隆抗体与这个关键O-糖肽部分之间的相互作用。NMR研究表明,N末端免疫显性区域[Ala-Pro-Asp-Thr(O-聚糖)-Arg]形成反向γ-转角样结构,而由N-糖肽和接头SrtA-肽组成的C末端区域被证明是独立的随机结构。这些结果表明,当通过具有分离N和C末端区域可能作用的人工插入肽将庞大的O-和N-聚糖链结合在一起时,它们可以作为与疾病相关的表位和碳水化合物结合蛋白的配体独立发挥作用。本策略将极大地促进快速合成多重功能化的复杂新糖肽,作为研究各种糖蛋白结构-功能关系以及开发新型糖肽基生物药物、药物递送系统和生物医学材料的新型便捷工具或模型。

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