Schilling Birgit, McLendon Molly K, Phillips Nancy J, Apicella Michael A, Gibson Bradford W
The Buck Institute for Age Research, Novato, California 94945, USA.
Anal Chem. 2007 Feb 1;79(3):1034-42. doi: 10.1021/ac061654e.
Lipopolysaccharide (LPS) is a major component of the outer membrane of Gram-negative bacteria. The lipid A region of LPS stimulates the immune system in a structure-dependent manner. We have previously identified the two major lipid A species from Francisella tularensis as asymmetric tetraacylated structures containing four long acyl chains (16 and 18 carbons) and a single phosphate group that is partially modified by galactosamine (Phillips, N. J.; Schilling B.; McLendon, M. K.; Apicella, M. A.; Gibson, B. W. Infect. Immun. 2004, 72, 5340-5348). In the current study, we used matrix-assisted laser desorption/ionization on an intermediate vacuum source (vMALDI) coupled to a linear ion trap (LIT) mass spectrometer in multiple-stage mass fragmentation mode (MSn) to determine the structures of several minor and low abundant lipid A species present in F. tularensis, Francisella novicida, and Francisella philomiragia LPS that have not been previously characterized. Comprehensive vMALDI-MSn fragmentation studies allowed us to deduce the composition and the position of the fatty acid substituents within the lipid A moieties. Unexpectedly, most of these minor lipid A species consisted of multiple isobaric species with acyl chains of various lengths. Moreover, we found that a small portion of these lipid A species may be modified by the addition of a hexose or hexosamine sugar, in addition to the galactosamine that was previously identified. Overall, we found that MSn analysis on the vMALDI-LIT-MS platform was highly efficient and sensitive, allowing for thorough analysis of very minor lipid A species.
脂多糖(LPS)是革兰氏阴性菌外膜的主要成分。LPS的脂质A区域以结构依赖的方式刺激免疫系统。我们之前已从土拉弗朗西斯菌中鉴定出两种主要的脂质A种类,它们是不对称的四酰化结构,含有四条长酰基链(16和18个碳)以及一个单磷酸基团,该磷酸基团被半乳糖胺部分修饰(菲利普斯,N.J.;席林,B.;麦克伦登,M.K.;阿皮塞拉,M.A.;吉布森,B.W.《感染与免疫》2004年,72卷,5340 - 5348页)。在当前研究中,我们使用与线性离子阱(LIT)质谱仪联用的中间真空源基质辅助激光解吸/电离(vMALDI),以多级质谱碎裂模式(MSn)来确定存在于土拉弗朗西斯菌、新凶手弗朗西斯菌和费氏弗朗西斯菌LPS中几种先前未被表征的次要且低丰度脂质A种类的结构。全面的vMALDI - MSn碎裂研究使我们能够推断脂质A部分内脂肪酸取代基的组成和位置。出乎意料的是,这些次要脂质A种类中的大多数由具有各种长度酰基链的多个等压种类组成。此外,我们发现除了先前鉴定出的半乳糖胺外,这些脂质A种类中的一小部分可能还被添加的己糖或己糖胺糖修饰。总体而言,我们发现vMALDI - LIT - MS平台上的MSn分析高效且灵敏,能够对非常次要的脂质A种类进行全面分析。