Molinaro Antonio, Silipo Alba, Castro Cristina De, Sturiale Luisa, Nigro Giulia, Garozzo Domenico, Bernardini Maria Lina, Lanzetta Rosa, Parrilli Michelangelo
Dipartimento di Chimica Organica e Biochimica, Università degli Studi di Napoli Federico II, Via Cintia 4, I-80126 Napoli, Italy.
Glycobiology. 2008 Mar;18(3):260-9. doi: 10.1093/glycob/cwm140. Epub 2008 Jan 3.
Shigella flexneri is a gram-negative bacterium responsible for serious enteric infections that occur mainly in the terminal ileum and colon. High interest in Shigella, as a human pathogen, is driven by its antibiotic resistance and the necessity to develop a vaccine against its infections. Vaccines of the last generation use carbohydrate moieties of the lipopolysaccharide as probable candidates. For this reason, the primary structure of the core oligosaccharide from the R-LPS produced by S. flexneri M90T serotype 5 using chemical analysis, nuclear magnetic resonance (NMR) spectroscopy and mass spectrometry (MALDI), is herein reported. This is the first time that the core oligosaccharide primary structure by S. flexneri M90T is established in an unambiguous multidisciplinary approach. Chemical and spectroscopical investigation of the de-acetylated LPS showed that the inner core structure is characterized by a L,D-Hep-(1 -->7)-L,D-Hep-(1 -->3)-L,D-Hep-(1 -->5)-[Kdo-(2 -->4)]-Kdo sequence that is the common structural theme identified in Enterobacteriaceae. In particular, in S. flexneri M90T serotype 5 LPS, a glucosamine residue is additionally sitting at O-7 of the last heptose whereas the outer core is characterized by glucose and galactose residues. Also, in order to exactly define the position of glycine that is an integral constituent of the core region of the LPS, we created a S. flexneri M90T delta galU mutant and studied its LOS. In this way it was possible to establish that glycine is sitting at O-6 of the second heptose in the inner core.
福氏志贺菌是一种革兰氏阴性菌,可引发严重的肠道感染,主要发生在回肠末端和结肠。作为一种人类病原体,福氏志贺菌因其抗生素耐药性以及开发针对其感染的疫苗的必要性而备受关注。上一代疫苗使用脂多糖的碳水化合物部分作为可能的候选物。因此,本文报道了利用化学分析、核磁共振(NMR)光谱和基质辅助激光解吸电离质谱(MALDI)对福氏志贺菌M90T血清型5产生的R-LPS核心寡糖的一级结构进行的研究。这是首次以明确的多学科方法确定福氏志贺菌M90T核心寡糖的一级结构。对去乙酰化LPS的化学和光谱研究表明,内核结构的特征是L,D-庚糖-(1→7)-L,D-庚糖-(1→3)-L,D-庚糖-(1→5)-[Kdo-(2→4)]-Kdo序列,这是肠杆菌科中确定的常见结构基序。特别是,在福氏志贺菌M90T血清型5 LPS中,一个氨基葡萄糖残基额外位于最后一个庚糖的O-7位,而外核的特征是葡萄糖和半乳糖残基。此外,为了准确确定作为LPS核心区域组成部分的甘氨酸的位置,我们构建了福氏志贺菌M90T delta galU突变体并研究了其脂寡糖(LOS)。通过这种方式,可以确定甘氨酸位于内核中第二个庚糖的O-6位。