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类肝素糖胺聚糖串联质谱中的竞争性碎片化过程。

Competing fragmentation processes in tandem mass spectra of heparin-like glycosaminoglycans.

作者信息

Naggar Estee F, Costello Catherine E, Zaia Joseph

机构信息

Department of Biochemistry, Boston University School of Medicine, Boston, Massachusetts 02118-2526, USA.

出版信息

J Am Soc Mass Spectrom. 2004 Nov;15(11):1534-44. doi: 10.1016/j.jasms.2004.06.019.

Abstract

Heparin-like glycosaminoglycans (HLGAGs) are highly sulfated, linear carbohydrates attached to proteoglycan core proteins and expressed on cell surfaces and in basement membranes. These carbohydrates bind several families of growth factors and growth factor receptors and act as coreceptors for these molecules. Tandem mass spectrometry has the potential to increase our understanding of the biological significance of HLGAG expression by providing a facile means for sequencing these molecules without the need for time-consuming total purification. The challenge for tandem mass spectrometric analysis of HLGAGs is to produce abundant ions derived via glycosidic bond cleavages while minimizing the abundances of ions produced from elimination of the fragile sulfate groups. This work describes the competing fragmentation pathways that result from dissociation of high negative charge state ions generated from HLGAGs. Glycosidic bond cleavage ion formation competes with losses of equivalents of H2SO4, resulting in complex ion patterns. For the most highly sulfated structure examined, an octasulfated tetramer, an unusual loss of charge from the precursor ion was observed, accompanied by low abundance ions originating from subsequent backbone cleavages. These results demonstrate that fragmentation processes competing with glycosidic bond cleavages are more favored for highly sulfated HLGAG ions. In conclusion, reduction of charge-charge repulsions, such as is achieved by pairing the HLGAG ions with metal cations, is necessary in order to minimize the abundances of ions derived via fragmentation processes that compete with glycosidic bond cleavages.

摘要

类肝素糖胺聚糖(HLGAGs)是高度硫酸化的线性碳水化合物,附着于蛋白聚糖核心蛋白上,并在细胞表面和基底膜中表达。这些碳水化合物结合多个生长因子家族和生长因子受体,并作为这些分子的共受体发挥作用。串联质谱有潜力通过提供一种无需耗时的完全纯化即可对这些分子进行测序的简便方法,来增进我们对HLGAG表达生物学意义的理解。对HLGAGs进行串联质谱分析的挑战在于,要产生通过糖苷键裂解衍生的丰富离子,同时尽量减少因脆弱硫酸根消除而产生的离子丰度。这项工作描述了HLGAGs产生的高负电荷态离子解离所导致的相互竞争的碎裂途径。糖苷键裂解离子的形成与硫酸等同物的损失相互竞争,从而产生复杂的离子模式。对于所研究的硫酸化程度最高的结构,一种八硫酸化四聚体,观察到前体离子出现异常的电荷损失,同时伴有源自后续主链裂解的低丰度离子。这些结果表明,与糖苷键裂解相互竞争的碎裂过程对于高度硫酸化的HLGAG离子更为有利。总之,为了尽量减少通过与糖苷键裂解相互竞争的碎裂过程衍生的离子丰度,有必要减少电荷 - 电荷排斥,例如通过将HLGAG离子与金属阳离子配对来实现。

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