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通过质子化分子和单电荷加钠衍生物的 CID 碎裂对单磷酸化脂质 A 进行完整的结构阐明。

Complete Structural Elucidation of Monophosphorylated Lipid A by CID Fragmentation of Protonated Molecule and Singly Charged Sodiated Adducts.

机构信息

Department of Analytical and Environmental Chemistry, Faculty of Sciences, University of Pécs, Ifjúság útja 6, H-7624 Pécs, Hungary.

Institute of Bioanalysis, Medical School and Szentágothai Research Centre, University of Pécs, Szigeti út 12, H-7624 Pécs, Hungary.

出版信息

J Am Soc Mass Spectrom. 2023 Jan 4;34(1):92-100. doi: 10.1021/jasms.2c00269. Epub 2022 Dec 20.

Abstract

Lipid A, the inflammatory portion of lipopolysaccharides (LPS, endotoxins), is the main component of the outer membrane of Gram-negative bacteria. Its bioactivity in humans and animals is strictly related to its chemical structure. In the present work, the fragmentation patterns of the singly charged monosodium [M + Na] and disodium [M - H + 2Na] adducts, as well as the protonated form of monophosphorylated lipid A species were investigated in detail using positive-ion electrospray ionization-based tandem (MS/MS) and multistage mass spectrometry (MS) with low-energy collision-induced dissociation (CID). Several synthetic and native lipid A samples were included in the study. We found that the fragmentation pattern of disodiated lipid A is quite similar to that of the well-characterized deprotonated lipid A molecule (typically detected in the negative-ion mode), while the fragmentation pattern of monosodiated lipid A contains fragment ions similar to those of both protonated and deprotonated lipid A molecules. In summary, we propose a new mass spectrometry approach based on the fragmentation regularities of only positively charged precursor ions to dissect the location of the phosphate group and fatty acid moieties on monophosphorylated lipid A. Moreover, this study provides a better understanding of the so-called "chimera mass spectra", which are commonly detected during the fragmentation of native lipid A samples containing both C-1 and C-4' phosphate positional isomers but rarely identified in negative-ion mode.

摘要

脂质 A 是脂多糖(LPS,内毒素)的炎性部分,是革兰氏阴性细菌外膜的主要组成部分。其在人类和动物中的生物活性与其化学结构严格相关。在本工作中,使用正离子电喷雾串联(MS/MS)和多阶段质谱(MS)以及低能碰撞诱导解离(CID)详细研究了单价单钠盐[M + Na]+和二价钠盐[M - H + 2Na]+加合物以及单磷酸化脂质 A 物种的质子化形式的碎裂模式。研究中包括了几种合成和天然的脂质 A 样品。我们发现,二价化脂质 A 的碎裂模式与经过充分表征的去质子化脂质 A 分子(通常在负离子模式下检测到)非常相似,而单价化脂质 A 的碎裂模式包含与质子化和去质子化脂质 A 分子相似的碎片离子。总之,我们提出了一种新的基于仅带正电荷的前体离子碎裂规律的质谱方法,以剖析单磷酸化脂质 A 上磷酸基团和脂肪酸部分的位置。此外,这项研究更好地理解了所谓的“嵌合体质谱”,这些谱图在含有 C-1 和 C-4'磷酸位置异构体的天然脂质 A 样品的碎裂过程中经常检测到,但在负离子模式下很少被识别。

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