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Profiles of structural heterogeneity in native lipooligosaccharides of Neisseria and cytokine induction

机译:奈瑟菌天然脂寡糖的结构异质性概况及细胞因子诱导

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摘要

Fine differences in the phosphorylation and acylation of lipooligosaccharide (LOS) from Neisseria species are thought to profoundly influence the virulence of the organisms and the innate immune responses of the host, such as signaling through toll-like receptor 4 (TLR4) and triggering receptor expressed on myeloid cells (TREM). MALDI time-of-flight (TOF) mass spectrometry was used to characterize heterogeneity in the native LOS from Neisseria gonorrheae and N. meningitidis. A sample preparation methodology previously reported for Escherichia coli lipopolysaccharide (LPS) employing deposition of untreated LOS on a thin layer of a film composed of 2,4,6-trihydroxyacetophenone and nitrocellulose was used. Prominent peaks were observed corresponding to molecular ions and to fragment ions primarily formed by cleavage between the 3-deoxy-D-manno-oct-2-ulosonic acid (Kdo) and the lipid A (LA). Analyses of these data and comparison with spectra of the corresponding O-deacylated or hydrogen fluoride-treated LOS enabled the detection of novel species that apparently differed by the expression of up to three phosphates with one or more phosphoethanolamine (PEA) groups on the LA. We found that the heterogeneity profile of acylation and phosphorylation correlates with the induction of proinflammatory cytokines in THP-1 monocytic cells. This methodology enabled us to rapidly profile components of structural variants of native LOS that are of importance biologically.
机译:人们认为,奈瑟氏球菌属的脂寡糖(LOS)的磷酸化和酰化之间的细微差异会深刻影响生物体的毒力和宿主的先天免疫反应,例如通过收费型受体4(TLR4)进行信号传递和触发受体表达在髓样细胞(TREM)上。 MALDI飞行时间(TOF)质谱用于表征淋病奈瑟氏球菌和脑膜炎奈瑟氏球菌天然LOS中的异质性。使用先前报道的用于大肠杆菌脂多糖(LPS)的样品制备方法,该方法采用未处理的LOS沉积在由2,4,6-三羟基苯乙酮和硝化纤维素组成的薄膜薄层上。观察到对应于分子离子和片段离子的突出峰,这些离子主要是由3-脱氧-D-甘露聚糖-辛-2-氟酸(Kdo)和脂质A(LA)之间的裂解形成的。对这些数据进行分析并与相应的O-去酰化或氟化氢处理的LOS光谱进行比较,可以检测出明显不同的新型物种,这些物种明显不同之处在于在LA上最多带有三个或多个磷酸乙醇胺(PEA)基团的磷酸酯的表达。我们发现酰化和磷酸化的异质性概况与THP-1单核细胞中促炎细胞因子的诱导相关。这种方法使我们能够快速剖析天然LOS的结构变异的组成部分,这些组成部分在生物学上很重要。

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