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PMID: 12138124 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

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.

The Journal of biological chemistry ·Vol. 277 ·No. 41 ·2002-10-11 ·Pages 38148-58

Constant P, Perez E, Malaga W, Lanéelle MA, Saurel O, Daffé M, Guilhot C

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.

MeSH Terms
Animals Antigens, Bacterial/metabolism Base Sequence Esters/chemistry,metabolism Genes, Bacterial Lipids/biosynthesis,chemistry Molecular Sequence Data Molecular Structure Multienzyme Complexes/genetics Mycobacterium tuberculosis/genetics,metabolism Parabens/chemistry,metabolism Sequence Alignment Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization Virulence
Chemicals
Antigens, Bacterial Esters Lipids Multienzyme Complexes Parabens Mycobacterium tuberculosis antigens 4-hydroxybenzoic acid
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Constant Patricia
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.
Perez Esther
Malaga Wladimir
Lanéelle Marie-Antoinette
Saurel Olivier
Daffé Mamadou
Guilhot Christophe
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2002-10-11
Epub
2002-00-22
Pages
38148-58
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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