Sándor Viktor, Kilár Anikó, Kilár Ferenc, Kocsis Béla, Dörnyei Ágnes
Institute of Bioanalysis and Szentágothai Research Centre, University of Pécs, Szigeti út 12., 7624, Pécs, Hungary.
MTA-PTE Molecular Interactions in Separation Science Research Group, Ifjúság útja 6., 7624, Pécs, Hungary.
J Mass Spectrom. 2016 Aug;51(8):615-628. doi: 10.1002/jms.3786.
Non-phosphorylated lipid A species confer reduced inflammatory potential for the bacteria. Knowledge on their chemical structure and presence in bacterial pathogens may contribute to the understanding of bacterial resistance and activation of the host innate immune system. In this study, we report the fragmentation pathways of negatively charged, non-phosphorylated lipid A species under low-energy collision-induced dissociation conditions of an electrospray ionization quadrupole time-of-flight instrument. Charge-promoted consecutive and competitive eliminations of the acyl chains and cross-ring cleavages of the sugar residues were observed. The A-type fragment ion series and the complementary X-type fragment(s) with corresponding deprotonated carboxamide(s) were diagnostic for the distribution of the primary and secondary acyl residues on the non-reducing and the reducing ends, respectively, of the non-phosphorylated lipid A backbone. Reversed-phase liquid chromatography in combination with negative-ion electrospray ionization quadrupole time-of-flight tandem mass spectrometry could provide sufficient information on the primary and secondary acyl residues of a non-phosphorylated lipid A. As a standard, the hexa-acylated ion at m/z 1636 with the Escherichia coli-type acyl distribution (from E. coli O111) was used. The method was tested and refined with the analysis of other non-phosphorylated hexa- and several hepta-, penta-, and tetra-acylated lipid A species detected in crude lipid A fractions from E. coli O111 and Proteus morganii O34 bacteria. Copyright © 2016 John Wiley & Sons, Ltd.
非磷酸化脂多糖赋予细菌较低的炎症潜能。了解它们的化学结构及其在细菌病原体中的存在情况,可能有助于理解细菌耐药性以及宿主固有免疫系统的激活机制。在本研究中,我们报告了在电喷雾电离四极杆飞行时间仪器的低能碰撞诱导解离条件下,带负电荷的非磷酸化脂多糖的碎裂途径。观察到了电荷促进的酰基链连续和竞争性消除以及糖残基的跨环裂解。A型碎片离子系列以及带有相应去质子化羧酰胺的互补X型碎片,分别可用于诊断非磷酸化脂多糖主链非还原端和还原端上一级和二级酰基残基的分布情况。反相液相色谱结合负离子电喷雾电离四极杆飞行时间串联质谱,可为非磷酸化脂多糖的一级和二级酰基残基提供足够的信息。作为标准,使用了具有大肠杆菌型酰基分布(来自大肠杆菌O111)、质荷比为1636的六酰化离子。该方法通过分析从大肠杆菌O111和摩根氏变形杆菌O34细菌的粗脂多糖馏分中检测到的其他非磷酸化六酰化以及几种七酰化、五酰化和四酰化脂多糖进行了测试和完善。版权所有© 2016约翰威立父子有限公司。