Desai Nikunj, Thomas Daniel A, Lee Jungeun, Gao Jinshan, Beauchamp J L
Department of Chemistry and Biochemistry , Center for Quantitative Obesity Research , Montclair State University , 1 Normal Avenue , Montclair , NJ 07043 , USA . Email:
Arthur Amos Noyes Laboratory of Chemical Physics , California Institute of Technology , 1200 East California Blvd , Pasadena , CA 91125 , USA . Email:
Chem Sci. 2016 Aug 1;7(8):5390-5397. doi: 10.1039/c6sc01371f. Epub 2016 May 5.
Mass spectrometric glycan rearrangement is problematic because it provides misleading structural information. Here we report on a new reagent, a methylated free radical activated glycan sequencing reagent (Me-FRAGS), which combines a free radical precursor with a methylated pyridine moiety that can be coupled to the reducing terminus of glycans. The collisional activation of Me-FRAGS-derivatized glycans generates a nascent free radical that concurrently induces abundant glycosidic bond and cross-ring cleavage without the need for subsequent activation. The product ions resulting from glycan rearrangement, including internal residue loss and multiple external residue losses, are precluded. Glycan structures can be easily assembled and visualized using a radical driven glycan deconstruction diagram (R-DECON diagram). The presence and location of -acetylated saccharide units and branch sites can be identified from the characteristic dissociation patterns observed only at these locations. The mechanisms of dissociation are investigated and discussed. This Me-FRAGS based mass spectrometric approach creates a new blueprint for glycan structure analysis.
质谱聚糖重排存在问题,因为它会提供误导性的结构信息。在此,我们报道一种新型试剂,即甲基化自由基活化聚糖测序试剂(Me-FRAGS),它将自由基前体与可连接到聚糖还原端的甲基化吡啶部分相结合。经Me-FRAGS衍生化的聚糖的碰撞活化会产生一个新生自由基,该自由基能同时诱导大量糖苷键和跨环裂解,而无需后续活化。聚糖重排产生的产物离子,包括内部残基丢失和多个外部残基丢失,都被排除。使用自由基驱动的聚糖解构图(R-DECON图)可以轻松组装和可视化聚糖结构。仅在这些位置观察到的特征性解离模式可用于识别乙酰化糖单元和分支位点的存在及位置。对解离机制进行了研究和讨论。这种基于Me-FRAGS的质谱方法为聚糖结构分析创造了新的蓝图。