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使用生物合成同位素通过离子阱飞行时间质谱(IT-TOF-MS)对异黄酮进行的裂解研究。

A fragmentation study of isoflavones by IT-TOF-MS using biosynthesized isotopes.

作者信息

Nakata Ryu, Yoshinaga Naoko, Teraishi Masayoshi, Okumoto Yutaka, Huffaker Alisa, Schmelz Eric A, Mori Naoki

机构信息

a Graduate School of Agriculture , Kyoto University , Kyoto , Japan.

b Section of Cell and Developmental Biology , University of California at San Diego , San Diego , CA , USA.

出版信息

Biosci Biotechnol Biochem. 2018 Aug;82(8):1309-1315. doi: 10.1080/09168451.2018.1465810. Epub 2018 Apr 26.

Abstract

To aid in the identification and quantification of biologically and agriculturally significant natural products, tandem mass spectrometry can provide accurate structural information with high selectivity and sensitivity. In this study, diagnostic fragmentation patterns of isoflavonoids were examined by liquid chromatography-ion trap-time of flight-mass spectrometry (LC-IT-TOF-MS). The fragmentation scheme for [M+H-2CO] ions derived from isoflavones and [M+H-B-ring-CO] ions derived from 5-hydroxyisoflavones, were investigated using different isotopically labeled isoflavones, specifically [1',2',3',4',5',6',2,3,4-C] and [2',3',5',6',2-D] isoflavones. Specific isotopically labeled isoflavones were prepared through the biosynthetic incorporation of pharmacologically applied C- and D-labelled L-phenylalanine precursors in soybean plants following the application of insect elicitors. Using this approach, we empirically demonstrate that the [M+H-2CO] ion is generated by an intramolecular proton rearrangement during fragmentation. Furthermore, [M+H-B-ring-CO] ion is demonstrated to contain a CH moiety derived from C-ring of 5-hydroxyisoflavones. A mechanistic understanding of characteristic isoflavone fragmentation patterns contributes to the efficacy and confidence in identifying related isoflavones by LC-MS.

摘要

为了有助于鉴定和定量具有生物学和农业意义的天然产物,串联质谱能够以高选择性和灵敏度提供准确的结构信息。在本研究中,通过液相色谱-离子阱-飞行时间质谱(LC-IT-TOF-MS)研究了异黄酮类化合物的诊断性裂解模式。使用不同的同位素标记异黄酮,特别是[1',2',3',4',5',6',2,3,4-C]和[2',3',5',6',2-D]异黄酮,研究了来自异黄酮的[M+H-2CO]离子和来自5-羟基异黄酮的[M+H-B环-CO]离子的裂解方案。通过在大豆植株中施用昆虫诱导剂后,将药理学应用的C-和D-标记的L-苯丙氨酸前体进行生物合成掺入,制备了特定的同位素标记异黄酮。使用这种方法,我们通过实验证明[M+H-2CO]离子是在裂解过程中通过分子内质子重排产生的。此外,[M+H-B环-CO]离子被证明含有一个源自5-羟基异黄酮C环的CH部分。对异黄酮特征裂解模式的机理理解有助于通过LC-MS鉴定相关异黄酮的效率和可信度。

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