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用电喷雾电离质谱分析新合成的糖融合的α,β-不饱和γ-内酯。

Electrospray ionization mass spectrometric analysis of newly synthesized alpha,beta-unsaturated gamma-lactones fused to sugars.

机构信息

Departamento de Química e Bioquímica, Centro de Química e Bioquímica, Faculdade de Ciências da Universidade de Lisboa, Campo Grande, 1749-016 Lisboa, Portugal.

出版信息

Rapid Commun Mass Spectrom. 2010 Apr 15;24(7):1049-58. doi: 10.1002/rcm.4490.

Abstract

Knowledge of the fragmentation mechanisms of lactones and their behaviour under electrospray ionization (ESI) conditions can be extended to larger and more complex natural products that contain an alpha,beta-unsaturated gamma-lactone moiety in their structure. Moreover, little is known about the gas-phase behaviour of alpha,beta-unsaturated gamma-lactones linked or fused to sugars. Therefore, five alpha,beta-unsaturated gamma-lactones (butenolides) fused to a pyranose ring, recently synthesized compounds with potential relevance regarding their biological properties, were investigated using ESI-MS and ESI-MS/MS in both positive and negative ion modes. Their fragmentation mechanisms and product ion structures were compared. It was observed that two isomers could be unambiguously distinguished in the negative ion mode by the fragmentation pathways of their deprotonated molecules as well as in the positive ion mode by the fragmentation pathways of either the protonated or the sodiated molecule. Fragmentation mechanisms are proposed taking into account the MS/MS data and semi-empirical calculations using the PM6 Hamiltonean. The semi-empirical calculations were also very useful in determining the most probable protonation and cationization sites.

摘要

内酯的断裂机制及其在电喷雾电离(ESI)条件下的行为的知识可以扩展到含有α,β-不饱和γ-内酯部分的更大和更复杂的天然产物。此外,关于与糖连接或融合的α,β-不饱和γ-内酯的气相行为知之甚少。因此,使用 ESI-MS 和 ESI-MS/MS 分别在正离子和负离子模式下研究了五种与吡喃糖环融合的α,β-不饱和γ-内酯(丁内酯),这些最近合成的化合物具有与其生物特性相关的潜在相关性。比较了它们的碎裂机制和产物离子结构。观察到两种异构体可以通过它们的去质子分子的碎裂途径在负离子模式下以及通过质子化或钠化分子的碎裂途径在正离子模式下明确区分。提出了断裂机制,考虑到 MS/MS 数据和使用 PM6 Hamiltonian 的半经验计算。半经验计算对于确定最可能的质子化和阳离子化位点也非常有用。

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