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分枝杆菌属海洋分枝杆菌的脂寡糖脂肪酸链:结构、定位和由 PapA4(MMAR_2343)蛋白酰化。

Fatty acyl chains of Mycobacterium marinum lipooligosaccharides: structure, localization and acylation by PapA4 (MMAR_2343) protein.

机构信息

Université de Lille 1, Unité de Glycobiologie Structurale et Fonctionnelle, F-59650 Villeneuve d'Ascq, France.

出版信息

J Biol Chem. 2011 Sep 23;286(38):33678-88. doi: 10.1074/jbc.M111.273920. Epub 2011 Jul 29.

Abstract

We have recently established the fine structure of the glycan backbone of lipooligosaccharides (LOS-I to LOS-IV) isolated from Mycobacterium marinum, a close relative of Mycobacterium tuberculosis. These studies culminated with the description of an unusual terminal N-acylated monosaccharide that confers important biological functions to LOS-IV, such as macrophage activation, that may be relevant to granuloma formation. It was, however, also suggested that the lipid moiety was required for LOSs to exert their immunomodulatory activity. Herein, using highly purified LOSs from M. marinum, we have determined through a combination of mass spectrometric and NMR techniques, the structure and localization of the fatty acids composing the lipid moiety. The occurrence of two distinct polymethyl-branched fatty acids presenting specific localizations is consistent with the presence of two highly related polyketide synthases (Pks5 and Pks5.1) in M. marinum and presumably involved in the synthesis of these fatty acyl chains. In addition, a bioinformatic search permitted us to identify a set of enzymes potentially involved in the biosynthesis or transfer of these lipids to the LOS trehalose unit. These include MMAR_2343, a member of the Pap (polyketide-associated protein) family, that acylates trehalose-based glycolipids in M. marinum. The participation of MMAR_2343 to LOS assembly was demonstrated using a M. marinum mutant carrying a transposon insertion in the MMAR_2343 gene. Disruption of MMAR_2343 resulted in a severe LOS breakdown, indicating that MMAR_2343, hereafter designated PapA4, fulfills the requirements for LOS acylation and assembly.

摘要

我们最近确定了分枝杆菌属(Mycobacterium marinum)来源的脂寡糖(LOS-I 到 LOS-IV)糖链骨架的精细结构,分枝杆菌属是结核分枝杆菌的近亲。这些研究的最终结果是描述了一个不寻常的末端 N-酰化单糖,它赋予 LOS-IV 重要的生物学功能,如激活巨噬细胞,这可能与肉芽肿的形成有关。然而,也有人认为脂质部分是 LOS 发挥其免疫调节活性所必需的。在此,我们使用分枝杆菌属高度纯化的 LOS,通过质谱和 NMR 技术的组合,确定了构成脂质部分的脂肪酸的结构和定位。两种不同的多甲基支链脂肪酸的存在,具有特定的定位,与分枝杆菌属中两种高度相关的聚酮合酶(Pks5 和 Pks5.1)的存在一致,这些酶可能参与这些脂肪酸链的合成。此外,生物信息学搜索使我们能够识别一组可能参与这些脂质生物合成或转移到 LOS 海藻糖单元的酶。其中包括 MMAR_2343,它是 Pap(聚酮相关蛋白)家族的成员,在分枝杆菌属中酰化基于海藻糖的糖脂。使用分枝杆菌属中插入转座子的 MMAR_2343 基因的突变体,证明了 MMAR_2343 参与 LOS 组装。MMAR_2343 的缺失导致 LOS 严重断裂,表明 MMAR_2343(以下称为 PapA4)满足 LOS 酰化和组装的要求。

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