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利用串联质谱裂解模式快速鉴定非典型四环素类药物。

Rapid identification of atypical tetracyclines using tandem mass spectrometric fragmentation patterns.

作者信息

Šala Martin, Kočar Drago, Lukežič Tadeja, Kosec Gregor, Hodošček Milan, Petković Hrvoje

机构信息

National Institute of Chemistry, Hajdrihova 19, SI-1000, Ljubljana, Slovenia.

Faculty of Chemistry and Chemical Technology, University of Ljubljana, Aškerčeva cesta 5, SI-1000, Ljubljana, Slovenia.

出版信息

Rapid Commun Mass Spectrom. 2015 Sep 15;29(17):1556-1562. doi: 10.1002/rcm.7252.

Abstract

RATIONALE

When applying biosynthetic engineering approaches at the early stages of drug discovery, e.g. aiming to develop novel tetracycline analogues, target compounds are generally produced by engineered microorganisms in low yields. Rapid and reliable identification of metabolites with desired structural modification directly from bacterial cultures is therefore of great importance.

METHODS

Structural elucidation of atypical tetracyclines was carried out by fragmentation applying electrospray ionisation tandem mass spectrometry (ESI-MS/MS) (triple quadrupole - linear ion trap; Applied Biosystems 4000 QTRAP) and a high-resolution mass spectrometer (Agilent Technologies 6224 TOF). Fragmentation patterns were obtained either with direct injection or by applying separation of target compounds with high-performance liquid chromatography (HPLC) prior to mass spectrometry. In-source and CID fragmentation were compared. Theoretical calculations of target structures using the Gaussian programme suite were carried out with the aim of strengthening experimental structural elucidation.

RESULTS

Recombinant strains of Amycolatopsis sulphurea producing atypical tetracyclines chelocardin, modified chelocardin analogues (9-demethylchelocardin and 2-carboxyamido-2-deacetyl-chelocardin (CDCHD), and anhydrotetracycline (ATC) were analysed by collision-induced dissociation (CID) fragmentation with higher collision energies to yield structurally important fragments which were identified. We have demonstrated that ATC is more prone to fragmentation compared to its epimer, which was further supported by comparison of both structures calculated with ab initio calculations.

CONCLUSIONS

We have demonstrated that fragmentation patterns of atypical tetracyclines in CID-MS spectra enable rapid structural elucidation of target metabolites produced by cultures of genetically engineered bacteria. This method is of significant importance for early stages of drug development considering that isolation of target metabolites produced at low concentration is challenging. Copyright © 2015 John Wiley & Sons, Ltd.

摘要

原理

在药物发现的早期阶段应用生物合成工程方法时,例如旨在开发新型四环素类似物,目标化合物通常由工程微生物低产量生产。因此,直接从细菌培养物中快速可靠地鉴定具有所需结构修饰的代谢物非常重要。

方法

通过应用电喷雾电离串联质谱(ESI-MS/MS)(三重四极杆-线性离子阱;应用生物系统公司4000 QTRAP)和高分辨率质谱仪(安捷伦科技公司6224 TOF)进行碎片化来阐明非典型四环素的结构。碎片化模式通过直接进样或在质谱分析前用高效液相色谱(HPLC)分离目标化合物来获得。比较了源内和碰撞诱导解离(CID)碎片化。使用高斯程序套件对目标结构进行理论计算,以加强实验结构解析。

结果

通过具有更高碰撞能量的碰撞诱导解离(CID)碎片化分析了产生非典型四环素螯合卡菌素、修饰的螯合卡菌素类似物(9-去甲基螯合卡菌素和2-羧酰胺基-2-脱乙酰基-螯合卡菌素(CDCHD))以及脱水四环素(ATC)的硫黄拟无枝酸菌重组菌株,以产生并鉴定出具有重要结构的碎片。我们已经证明,与它的差向异构体相比,ATC更容易碎片化,从头计算对两种结构的比较进一步支持了这一点。

结论

我们已经证明,CID-MS谱中非典型四环素的碎片化模式能够快速解析基因工程细菌培养物产生的目标代谢物的结构。考虑到低浓度产生的目标代谢物的分离具有挑战性,该方法在药物开发的早期阶段具有重要意义。版权所有©2015约翰威立父子有限公司。

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