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鞘氨醇菌素的电喷雾串联质谱分析。

Electrospray ionization tandem mass spectrometry of chaetoglobosins.

机构信息

Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu 610041, P.R. China.

出版信息

Rapid Commun Mass Spectrom. 2012 Sep 30;26(18):2115-22. doi: 10.1002/rcm.6329.

Abstract

RATIONALE

Chaetoglobosins are a family of macrocyclic polyketide alkaloids. They possess many similar isomers and exhibit a wide range of biological activities. Thus, there is a need for reliable, fast, and low-cost analysis of this class of compounds.

METHODS

A series of seven chaetoglobosins from Chaetomium globosum, including two types of isomers, were investigated using electrospray ionization quadrupole time-of-flight tandem mass spectrometry (ESI-QTOF-MS/MS) in both positive- and negative-ion mode. The identity of major product ions was supported by deuterium-labeling experiments.

RESULTS

In positive-ion mode, the product ion at m/z 130 is the characteristic ion of the indolyl group. A McLafferty rearrangement might play a significant role in the fragmentation of the macrocycle moiety for most chaetoglobosins and produces two series of characteristic product ions, accompanied by neutral losses. The characteristic product ion at m/z 309 in the MS/MS spectrum of chaetoglobosins E indicates the structure of the cyclic olefinic bond in ring B and can be used to distinguish it from the isomers, chaetoglobosins F(ex) , which has an exocyclic double bond on ring B. In negative-ion mode, the McLafferty rearrangement has an important role in the fragmentation pattern of the macrocycle. Some high-abundance radical ions were detected. The radical product ion at m/z 138 might differentiate chaetoglobosins F and penochalasin F, isomers which have very similar structures.

CONCLUSIONS

In summary, complementary information obtained from fragmentation experiments of M+H and M-H precursor ions is especially valuable for rapid identification of chaetoglobosins. The high-abundance radical ions in negative-ion mode are also of scientific interest.

摘要

原理

沙壳菌素是一类大环多酮生物碱。它们具有许多相似的异构体,并表现出广泛的生物活性。因此,需要可靠、快速且低成本的分析此类化合物。

方法

采用电喷雾电离四极杆飞行时间串联质谱(ESI-QTOF-MS/MS),在正、负离子模式下,对来自Chaetomium globosum 的七种沙壳菌素(包括两种异构体)进行了研究。主要产物离子的鉴定得到氘标记实验的支持。

结果

在正离子模式下,m/z 130 的产物离子是吲哚基的特征离子。麦拉弗蒂重排可能在大环部分的碎裂中起重要作用,大多数沙壳菌素产生两个系列的特征产物离子,并伴有中性损失。沙壳菌素 E 的 MS/MS 谱中 m/z 309 的特征产物离子表明 B 环中环烯键的结构,可用于将其与异构体沙壳菌素 F(ex) 区分开来,后者 B 环上有一个环外双键。在负离子模式下,麦拉弗蒂重排对大环的碎裂模式起重要作用。检测到一些高丰度的自由基离子。m/z 138 的自由基产物离子可能区分结构非常相似的异构体沙壳菌素 F 和 penochalasin F。

结论

综上所述,从M+HM-H前体离子的碎裂实验中获得的互补信息对于快速鉴定沙壳菌素特别有价值。负离子模式中的高丰度自由基离子也具有科学意义。

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