Laboratoire de Chimie Physique Moléculaire, École Polytechnique Fédérale de Lausanne, EPFL SB ISIC LCPM, Station 6, 1015, Lausanne, Switzerland.
Department of Chemistry, Indiana University, 800 East Kirkwood Avenue, Bloomington, IN, 47405, USA.
J Am Soc Mass Spectrom. 2017 Oct;28(10):2217-2222. doi: 10.1007/s13361-017-1728-6. Epub 2017 Jun 22.
The structural characterization of glycans by mass spectrometry is particularly challenging. This is because of the high degree of isomerism in which glycans of the same mass can differ in their stereochemistry, attachment points, and degree of branching. Here we show that the addition of cryogenic vibrational spectroscopy to mass and mobility measurements allows one to uniquely identify and characterize these complex biopolymers. We investigate six disaccharide isomers that differ in their stereochemistry, attachment point of the glycosidic bond, and monosaccharide content, and demonstrate that we can identify each one unambiguously. Even disaccharides that differ by a single stereogenic center or in the monosaccharide sequence order show distinct vibrational fingerprints that would clearly allow their identification in a mixture, which is not possible by ion mobility spectrometry/mass spectrometry alone. Moreover, this technique can be applied to larger glycans, which we demonstrate by distinguishing isomeric branched and linear pentasaccharides. The creation of a database containing mass, collision cross section, and vibrational fingerprint measurements for glycan standards should allow unambiguous identification and characterization of these biopolymers in mixtures, providing an enabling technology for all fields of glycoscience. Graphical Abstract ᅟ.
糖链的质谱结构分析极具挑战性。这是因为糖链在立体化学、连接点和分支程度上存在高度的异构性,即使质量相同的糖链也可能有所不同。在这里,我们展示了将低温振动光谱与质量和迁移率测量相结合,可用于独特地识别和表征这些复杂生物聚合物。我们研究了六种在立体化学、糖苷键连接点和单糖含量上存在差异的二糖异构体,并证明我们可以明确地识别每一种异构体。即使是在单糖序列顺序上只相差一个手性中心的二糖,或者在单糖序列顺序上只相差一个手性中心的二糖,也表现出明显不同的振动指纹,这显然可以在混合物中进行识别,而仅凭离子迁移谱/质谱则无法实现。此外,该技术可应用于更大的聚糖,我们通过区分支化和线性五糖的异构体来证明这一点。创建一个包含聚糖标准品的质量、碰撞截面和振动指纹测量值的数据库,应该可以在混合物中对这些生物聚合物进行明确的识别和表征,为糖科学的所有领域提供一项支持技术。