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Effect of matrices and additives on phosphorylated and ketodeoxyoctonic acid lipids A analysis by matrix-assisted laser desorption ionization-mass spectrometry

机译:基质辅助和酮脱氧酸脂质对基质辅助激光解吸电离质谱分析的影响

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摘要

Lipid A is a major compound of the outer membrane of gram-negative bacteria and is a key factor of bacterial virulence. As lipid A's structure differs among bacterial species and varies between strains of the same species, knowing its modifications is essential to understand its implications in the infectious process. To analyze these lipids, matrix-assisted laser desorption ionization-mass spectrometry (MALDI-MS) is a well-suited method that is fast and efficient. However, there are limitations with the matrix and additives used, such as the suppression of signal or prompt fragmentations that could give a false overview of lipid A composition in biological samples. For a comprehensive analysis of the entire lipid A species present in a sample, we tested 16 matrices and 11 additives on two commercial lipids A. The first commercial one contains single phosphorylation group, and the second contains two phosphorylation and two ketodeoxyoctonic acid (KDO) groups. The lipid A containing KDO groups was essentially detected by the 3-hydroxypicolinic acid (3-HPA) matrix, whereas the monophosphorylated lipid A could be detected by 13 matrices out of the 16. We also demonstrated that the signal of diphosphorylated lipid A can be enhanced with the use of additives in the matrix. Our study indicated that the best conditions to obtain a clear signal of both lipids A without prompt fragmentation was the use of 3-HPA with 10mM trifluoroacetic acid (TFA).
机译:脂质A是革兰氏阴性细菌的外膜的主要化合物,是细菌毒力的关键因素。由于脂质A的结构在细菌物种中不同,并且在相同物种的菌株之间变化,知道其修改对于了解其对传染过程中的影响至关重要。为了分析这些脂质,基质辅助激光解吸电离质谱(MALDI-MS)是一种快速有效的良好方法。然而,存在的基质和添加剂存在局限性,例如抑制可以给出生物样品中的脂质组合物的错误概述的信号或迅速碎片。对于样品中存在的整个脂质的综合分析,我们在两种商业脂质A上测试了16种矩阵和11个添加剂。第一商业含有单一的磷酸化基团,第二种商业含有两种磷酸化和两个酮氧基苯乙烯(KDO)团体。含有kdo基团的脂质α基本上由3-羟基丙烯酸(3-羟基丙烯酸(3-HPA)基质检测,而单磷酸化脂A可以通过13个基质检测到16的13个矩阵。我们还证明了二磷酸化脂A的信号可以是通过在基质中使用添加剂增强。我们的研究表明,获得无迅速碎裂的脂质A的清晰信号的最佳条件是使用3-HPA具有10mm三氟乙酸(TFA)。

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