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通过β-消除和串联电喷雾质谱法对O-连接的N-乙酰葡糖胺修饰的糖肽进行选择性检测和位点分析。

Selective detection and site-analysis of O-GlcNAc-modified glycopeptides by beta-elimination and tandem electrospray mass spectrometry.

作者信息

Greis K D, Hayes B K, Comer F I, Kirk M, Barnes S, Lowary T L, Hart G W

机构信息

Department of Biochemistry and Molecular Genetics, University of Alabama at Birmingham 35294, USA.

出版信息

Anal Biochem. 1996 Feb 1;234(1):38-49. doi: 10.1006/abio.1996.0047.

Abstract

Over the past decade, a number of nuclear and cytoplasmic proteins have been identified that are modified by single N-acetylglucosamine residues attached to the hydroxyl side chain of serines or threonines (O-GlcNAc). O-GlcNAc is a dynamic modification and therefore may act in a regulatory capacity analogous to phosphorylation. To undertake site-directed mutagenesis studies of O-GlcNAc's function, it is necessary to identify the sites of glycosylation on various proteins. The current method of site mapping, which involves galactosyltransferase labeling, generation of glycopeptides by proteolysis, purification by several rounds of HPLC, and gas-phase and manual Edman sequencing, is very tedious and requires about 10 pmol of pure, labeled glycopeptide. In this report, synthetic glycopeptides were generated and used to demonstrate that O-GlcNAc-modified peptides can be rapidly identified in complex mixtures by HPLC-coupled electrospray mass spectrometry due to the partial loss of the O-linked glycan (204 amu) at a modest orifice potential. Furthermore, the exact site of glycosylation was directly identified in the low picomole range by collision-induced dissociation (CID) of the glycopeptide after removal of the O-GlcNAc by alkaline beta-elimination. The conversion of glycosylserine to 2-aminopropenoic acid (2-ap) by beta-elimination both decreased the mass of the glycopeptide by 222 amu and resulted in a CID fragment ion representing the loss of 69 amu (2-ap) instead of 87 amu (Ser) at the position of the glycosylserine. Finally, we tested this method on an identical synthetic, alpha-linked O-GalNAc-modified peptide. Like O-GlcNAc, the O-GalNAc moiety was selectively removed at a modest orifice potential; however, the beta-elimination conditions that efficiently removed the O-GlcNAc only liberated about 20% of the O-GalNAc. We conclude that the selectivity and the sensitivity of this method will make it a powerful tool for determining the sites of O-GlcNAc modification on proteins of low abundance such as transcription factors and oncogenes.

摘要

在过去十年中,已鉴定出多种核蛋白和胞质蛋白,它们会被连接在丝氨酸或苏氨酸羟基侧链上的单个N - 乙酰葡糖胺残基(O - GlcNAc)修饰。O - GlcNAc是一种动态修饰,因此可能具有类似于磷酸化的调节功能。为了进行O - GlcNAc功能的定点诱变研究,有必要确定各种蛋白质上的糖基化位点。目前的位点映射方法,包括半乳糖基转移酶标记、通过蛋白水解生成糖肽、经过几轮高效液相色谱(HPLC)纯化以及气相和手动埃德曼测序,非常繁琐,并且需要约10皮摩尔的纯标记糖肽。在本报告中,合成了糖肽并用于证明,由于在适度的孔口电势下O - 连接聚糖(204原子质量单位)的部分丢失,通过HPLC - 耦合电喷雾质谱可以在复杂混合物中快速鉴定出O - GlcNAc修饰的肽。此外,在通过碱性β - 消除去除O - GlcNAc后,通过糖肽的碰撞诱导解离(CID)在低皮摩尔范围内直接鉴定出糖基化的确切位点。通过β - 消除将糖基丝氨酸转化为2 - 氨基丙烯酸(2 - ap),既使糖肽的质量减少了222原子质量单位,又导致在糖基丝氨酸位置产生一个代表损失69原子质量单位(2 - ap)而非87原子质量单位(丝氨酸)的CID碎片离子。最后,我们在相同的合成α - 连接O - GalNAc修饰肽上测试了该方法。与O - GlcNAc一样,O - GalNAc部分在适度的孔口电势下被选择性去除;然而,有效去除O - GlcNAc的β - 消除条件仅释放了约20%的O - GalNAc。我们得出结论,该方法的选择性和灵敏度将使其成为确定低丰度蛋白质(如转录因子和癌基因)上O - GlcNAc修饰位点的有力工具。

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