首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Assignment of the Stereochemistry and Anomeric Configuration of Sugars within Oligosaccharides Via Overlapping Disaccharide Ladders Using MS~n
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Assignment of the Stereochemistry and Anomeric Configuration of Sugars within Oligosaccharides Via Overlapping Disaccharide Ladders Using MS~n

机译:通过使用MS〜n重叠二糖梯子分配寡糖中糖的立体化学和端基构型

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摘要

A systematic approach is described that can pinpoint the stereostructures (sugar identity, anomeric configuration, and location) of individual sugar units within linear oligosaccharides. Using a highly modified mass spectrometer, dissociation of linear oligosaccharides in the gas phase was optimized along multiple-stage tandem dissociation pathways (MS~n, n = 4 or 5). The instrument was a hybrid triple quadrupole/linear ion trap mass spectrometer capable of highefficiency bidirectional ion transfer between quadrupole arrays. Different types of collision-induced dissociation (CID), either on-resonance ion trap or beam-type CID could be utilized at any given stage of dissociation, enabling either glycosidic bond cleavages or cross-ring cleavages to be maximized when wanted. The approach first involves optimizing the isolation of disaccharide units as an ordered set of overlapping substructures via glycosidic bond cleavages during early stages of MS~n, with explicit intent to minimize cross-ring cleavages. Subsequently, cross-ring cleavages were optimized for individual disaccharides to yield key diagnostic product ions (m/z 221). Finally, fingerprint patterns that establish stereochemistry and anomeric configuration were obtained from the diagnostic ions via CID. Model linear oligosaccharides were derivatized at the reducing end, allowing overlapping ladders of disaccharides to be isolated from MS~n. High confidence stereo-structural determination was achieved by matching MS~n CID of the diagnostic ions to synthetic standards via a spectral matching algorithm. Using this MS~n (n = 4 or 5) approach, the stereostructures, anomeric configurations, and locations of three individual sugar units within two pentasaccharides were successfully determined.
机译:描述了一种系统的方法,可以查明线性寡糖中单个糖单元的立体结构(糖同一性,端基异构构型和位置)。使用高度改良的质谱仪,沿着多级串联解离途径(MS〜n,n = 4或5)优化了线性低聚糖在气相中的解离。该仪器是一种混合三重四极杆/线性离子阱质谱仪,能够在四极杆阵列之间进行高效双向离子转移。可以在任何给定的解离阶段使用不同类型的碰撞诱导解离(CID),无论是共振离子阱还是束型CID,都可以在需要时使糖苷键裂解或交叉环裂解最大化。该方法首先涉及在MS_n的早期阶段通过糖苷键裂解将二糖单元的分离优化为有序的重叠亚结构集,其明确意图是使交叉环裂解最小化。随后,针对单个二糖优化了交叉环裂解,以产生关键的诊断产物离子(m / z 221)。最后,通过CID从诊断离子获得建立立体化学和异头构型的指纹图谱。模型线性寡糖在还原端衍生化,从而可以从MS〜n中分离出重叠的梯形二糖。通过光谱诊断算法将诊断离子的MS〜n CID与合成标准品进行匹配,可以实现高置信度的立体结构测定。使用这种MS〜n(n = 4或5)方法,成功确定了两个五糖中三个单独糖单元的立体结构,端基构型和位置。

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