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首页> 外文期刊>European journal of mass spectrometry >Selective reduction of C = C double bonds in matrix-assisted laser desorption/ionization time-of-flight mass spectrometry of microcystins
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Selective reduction of C = C double bonds in matrix-assisted laser desorption/ionization time-of-flight mass spectrometry of microcystins

机译:微囊藻毒素的基质辅助激光解吸/电离飞行时间质谱中C = C双键的选择性还原

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摘要

Cyanobacteria are photosynthetic bacteria encountered in various aquatic environments. Some of them are able to produce powerful toxins called cyanotoxins. Among cyanotoxins, microcystins (MCs) constitute a group of closely related cyclic heptapeptides. Their sequences are made up of classical amino acids as well as post-translational modified ones. Interestingly, in vivo metabolism of microcystins seems to be greatly dependent on various minor structural differences and particularly those of the seventh amino acid, which can be either dehydroalanine (or a derivative), dehydroaminobutyric acid (or a derivative), serine or alanine. As a consequence, microcystins have been classified on the basis of the nature of this singular amino acid. A major difficulty in the classification of such toxins is that some of them share the same molecular masses and the same molecular formulas. Consequently. a simple mass measurement is not sufficient to determine the structure and the class of a toxin of interest. Heavy and expensive techniques are used to classify them, such as multi-dimensional. nuclear magnetic resonance and amino acid analysis. In this work, a new matrix-assisted laser desorption/ionization time-of-flight method leading to an easy classification of MCs is proposed. The methodology relies on the reductive properties of the matrix 1,5-diaminonaphtalene (1,5-DAN) which appears to be able to selectively reduce the double carbon-carbon bond belonging to the seventh amino acid. Moreover, the yield of reduction seems to be influenced by the degree of substitution of this double bond, allowing a discrimination between dehydroatanine and dehydroaminobutyric acid. This selective reduction was confirmed by the study of three synthetic peptides by mass spectrometry and tandem mass spectrometry. According to these results, the use of reductive matrices seems to be promising in the study of microcystins and in their classification. More generally, 1,5-DAN allows the selective reduction of double carbon-carbon bonds. This property could also be employed in the characterization of others types of compound displaying double bonds (petrochemistry, metabotomics....).
机译:蓝细菌是在各种水生环境中遇到的光合细菌。其中一些能够产生强力毒素,称为氰毒素。在蓝藻毒素中,微囊藻毒素(MCs)构成了一组紧密相关的环状七肽。它们的序列由经典氨基酸以及翻译后修饰的氨基酸组成。有趣的是,微囊藻毒素的体内代谢似乎很大程度上取决于各种微小的结构差异,尤其是第七氨基酸的差异,所述第七氨基酸可以是脱氢丙氨酸(或衍生物),脱氢氨基丁酸(或衍生物),丝氨酸或丙氨酸。结果,基于这种奇异氨基酸的性质对微囊藻毒素进行了分类。对这类毒素进行分类的主要困难是其中一些具有相同的分子质量和相同的分子式。所以。简单的质量测量不足以确定目标毒素的结构和类别。使用繁重且昂贵的技术对它们进行分类,例如多维。核磁共振和氨基酸分析。在这项工作中,提出了一种新的矩阵辅助激光解吸/电离飞行时间方法,该方法可轻松分类MC。该方法依赖于基质1,5-二氨基萘(1,5-DAN)的还原性能,该基质似乎能够选择性地还原属于第七个氨基酸的双碳-碳键。而且,还原的产率似乎受该双键的取代程度的影响,从而可以区分脱氢精氨酸和脱氢氨基丁酸。通过质谱法和串联质谱法对三种合成肽的研究证实了这种选择性还原。根据这些结果,在微囊藻毒素的研究及其分类中,使用还原性基质似乎是有希望的。更一般地,1,5-DAN允许选择性还原双碳-碳键。该特性也可用于表征其他类型的具有双键的化合物(石油化学,代谢组学……)。

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