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鉴定海洋分枝杆菌 Apa 抗原 O-甘露糖基化位点揭示了与结核分枝杆菌 Apa 同源物的重要糖基化变异性。

Identification of the Mycobacterium marinum Apa antigen O-mannosylation sites reveals important glycosylation variability with the M. tuberculosis Apa homologue.

机构信息

Université Lille1, Unité de Glycobiologie Structurale et Fonctionnelle, UGSF, F-59650 Villeneuve d'Ascq, France.

出版信息

J Proteomics. 2012 Oct 22;75(18):5695-705. doi: 10.1016/j.jprot.2012.07.017. Epub 2012 Jul 22.

Abstract

The 45/47 kDa Apa, an immuno-dominant antigen secreted by Mycobacterium tuberculosis is O-mannosylated at multiple sites. Glycosylation of Apa plays a key role in colonization and invasion of the host cells by M. tuberculosis through interactions of Apa with the host immune system C-type lectins. Mycobacterium marinum (M.ma) a fish pathogen, phylogenetically close to M. tuberculosis, induces a granulomatous response with features similar to those described for M. tuberculosis in human. Although M.ma possesses an Apa homologue, its glycosylation status is unknown, and whether this represents a crucial element in the pathophysiology induced by M.ma remains to be addressed. To this aim, we have identified two concanavalin A-reactive 45/47 kDa proteins from M.ma, which have been further purified by a two-step anion exchange chromatography process. Advanced liquid chromatography-nanoESI mass spectrometry-based proteomic analyses of peptides, derived from either tryptic digestion alone or in combination with the Asp-N endoproteinase, established that M.ma Apa possesses up to seven distinct O-mannosylated sites with mainly single mannose substitutions, which can be further extended at the Ser/Thr/Pro rich region near the N-terminus. This opens the way to further studies focussing on the involvement and biological functions of Apa O-mannosylation using the M.ma/zebrafish model.

摘要

45/47 kDa 的 Apa 是分枝杆菌属分泌的一种免疫显性抗原,在多个位点发生 O-甘露糖化。Apa 的糖基化在分枝杆菌属通过与宿主免疫系统 C 型凝集素相互作用而定植和入侵宿主细胞中起着关键作用。鱼类病原体海洋分枝杆菌(M.ma)与分枝杆菌属在系统发育上非常接近,会引起与人类分枝杆菌描述的特征相似的肉芽肿反应。尽管 M.ma 具有 Apa 同源物,但它的糖基化状态是未知的,而这是否代表 M.ma 引起的病理生理学的关键因素仍有待解决。为此,我们从 M.ma 中鉴定出两种刀豆球蛋白 A 反应性的 45/47 kDa 蛋白,并通过两步阴离子交换色谱法进一步纯化。来自胰蛋白酶消化或与 Asp-N 内切蛋白酶联合消化的肽的高级液相色谱-纳升电喷雾质谱(nanoESI MS)基于蛋白质组学分析表明,M.ma Apa 具有多达七个不同的 O-甘露糖化位点,主要是单个甘露糖取代,在靠近 N 端的 Ser/Thr/Pro 丰富区域可以进一步扩展。这为使用 M.ma/斑马鱼模型进一步研究 Apa O-甘露糖化的参与和生物学功能开辟了道路。

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