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pks15/1基因在结核分枝杆菌复合群中酚糖脂生物合成中的作用。有证据表明,所有菌株均合成糖基化对羟基苯甲酸甲酯,且缺乏酚糖脂的菌株在pks15/1基因中存在移码突变。

Role of the pks15/1 gene in the biosynthesis of phenolglycolipids in the Mycobacterium tuberculosis complex. Evidence that all strains synthesize glycosylated p-hydroxybenzoic methyl esters and that strains devoid of phenolglycolipids harbor a frameshift mutation in the pks15/1 gene.

作者信息

Constant Patricia, Perez Esther, Malaga Wladimir, Lanéelle Marie-Antoinette, Saurel Olivier, Daffé Mamadou, Guilhot Christophe

机构信息

Département Mécanismes Moléculaires des Infections Mycobactériennes, Institut de Pharmacologie et Biologie Structurale, CNRS and Université Paul Sabatier (Unité Mixte de Recherche 5089), 205 route de Narbonne, 31077 Toulouse Cedex, France.

出版信息

J Biol Chem. 2002 Oct 11;277(41):38148-58. doi: 10.1074/jbc.M206538200. Epub 2002 Jul 22.

Abstract

Diesters of phthiocerol and phenolphthiocerol are important virulence factors of Mycobacterium tuberculosis and Mycobacterium leprae, the two main mycobacterial pathogens in humans. They are both long-chain beta-diols, and their biosynthetic pathway is beginning to be elucidated. Although the two classes of molecules share a common lipid core, phthiocerol diesters have been found in all the strains of the M. tuberculosis complex examined although phenolphthiocerol diesters are produced by only a few groups of strains. To address the question of the origin of this diversity 8 reference strains and 10 clinical isolates of M. tuberculosis were analyzed. We report the presence of glycosylated p-hydroxybenzoic acid methyl esters, structurally related to the type-specific phenolphthiocerol glycolipids, in the culture media of all reference strains of M. tuberculosis, suggesting that the strains devoid of phenolphthiocerol derivatives are unable to elongate the putative p-hydroxybenzoic acid precursor. We also show that all the strains of M. tuberculosis examined and deficient in the production of phenolphthiocerol derivatives are natural mutants with a frameshift mutation in pks15/1 whereas a single open reading frame for pks15/1 is found in Mycobacterium bovis BCG, M. leprae, and strains of M. tuberculosis that produce phenolphthiocerol derivatives. Complementation of the H37Rv strain of M. tuberculosis, which is devoid of phenolphthiocerol derivatives, with the fused pks15/1 gene from M. bovis BCG restored phenolphthiocerol glycolipids production. Conversely, disruption of the pks15/1 gene in M. bovis BCG led to the abolition of the synthesis of type-specific phenolphthiocerol glycolipid. These data indicate that Pks15/1 is involved in the elongation of p-hydroxybenzoic acid to give p-hydroxyphenylalkanoates, which in turn are converted, presumably by the PpsA-E synthase, to phenolphthiocerol derivatives.

摘要

结核分枝杆菌醇二酯和酚结核分枝杆菌醇二酯是人类主要的两种分枝杆菌病原体——结核分枝杆菌和麻风分枝杆菌的重要毒力因子。它们都是长链β -二醇,其生物合成途径正开始被阐明。尽管这两类分子共享一个共同的脂质核心,但在所有检测的结核分枝杆菌复合群菌株中都发现了结核分枝杆菌醇二酯,而酚结核分枝杆菌醇二酯仅由少数菌株群产生。为了解决这种多样性的起源问题,对8株结核分枝杆菌参考菌株和10株临床分离株进行了分析。我们报告在所有结核分枝杆菌参考菌株的培养基中存在糖基化对羟基苯甲酸甲酯,其结构与型特异性酚结核分枝杆菌醇糖脂相关,这表明缺乏酚结核分枝杆菌醇衍生物的菌株无法延长假定的对羟基苯甲酸前体。我们还表明,所有检测的结核分枝杆菌菌株中缺乏酚结核分枝杆菌醇衍生物的都是天然突变体,在pks15/1中存在移码突变,而在卡介苗、麻风分枝杆菌和产生酚结核分枝杆菌醇衍生物的结核分枝杆菌菌株中发现了一个单一的pks15/1开放阅读框。用来自卡介苗的融合pks15/1基因对缺乏酚结核分枝杆菌醇衍生物的结核分枝杆菌H37Rv菌株进行互补,恢复了酚结核分枝杆菌醇糖脂的产生。相反,在卡介苗中破坏pks15/1基因导致型特异性酚结核分枝杆菌醇糖脂合成的废除。这些数据表明,Pks15/1参与将对羟基苯甲酸延长为对羟基苯基链烷酸酯,进而可能由PpsA - E合酶转化为酚结核分枝杆菌醇衍生物。

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