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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Delineating mechanisms of dissociation for isomeric heparin disaccharides using isotope labeling and ion trap tandem mass spectrometry
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Delineating mechanisms of dissociation for isomeric heparin disaccharides using isotope labeling and ion trap tandem mass spectrometry

机译:同位素标记和离子阱串联质谱法描述异构肝素二糖的解离机理

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摘要

Heparin and heparan sulfate (HS) glycosaminoglycans have been identified as important players in many physiological as well as pathophysiological settings. A better understanding of the biosynthesis and structure of these molecules is critical for further elucidation of their biological function. We have demonstrated the successful use of negative electrospray ionization tandem mass spectrometry in the differentiation of all twelve standard heparin-building blocks, including the potentially important N-unsubstituted disaccharides. Collision induced dissociation of each of the isomeric disaccharides provided unique product ion spectra, useful for identification and quantification of the relative amounts of each isomer present. In the research presented herein, isotopic labeling studies using O-18 and H-2 were used to determine the origins of each of the neutral losses observed in the product ion spectra, and mechanisms of dissociation consistent with the observed data were postulated. The general mechanisms postulated were for the generation of B, Y, and Z ions formed from glycosidic cleavages, as well as A and X ions formed from cross-ring cleavages. The eight isomeric heparin disaccharides all underwent cross-ring cleavage to form X-0,2(1) and (0,2)A(2) ions, and further experiments suggest that the mechanisms of formation of these ions are through a charge-remote process. The tandem mass spectrometry data presented herein also provide a foundation for further developments towards a practical analysis tool for the structural elucidation of larger, biologically important heparin/HS oligosaccharides by using mass spectrometry. (C) 2004 American Society for Mass Spectrometry.
机译:肝素和硫酸乙酰肝素(HS)糖胺聚糖已被确定为许多生理和病理生理环境中的重要角色。更好地了解这些分子的生物合成和结构对于进一步阐明其生物学功能至关重要。我们已经证明了负电喷雾电离串联质谱在所有十二种标准肝素结构单元(包括潜在重要的N-未取代的二糖)的区分中的成功使用。碰撞诱导的每个异构二糖的解离提供了独特的产物离子光谱,可用于鉴定和定量每种异构体的相对含量。在本文提出的研究中,使用O-18和H-2进行的同位素标记研究被用来确定产物离子光谱中观察到的每个中性损失的来源,并提出了与观察到的数据相符的解离机理。假定的一般机理是产生由糖苷裂解形成的B,Y和Z离子,以及由交叉环裂解形成的A和X离子。八个异构肝素二糖都经过交叉环裂解形成X-0,2(1)和(0,2)A(2)离子,进一步的实验表明这些离子的形成机理是通过电荷-远程过程。本文介绍的串联质谱数据也为进一步发展实用分析工具奠定了基础,该分析工具用于通过质谱分析结构更大的,生物学上重要的肝素/ HS寡糖。 (C)2004年美国质谱学会。

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