Youard_2007_J.Biol.Chem_282_35546

Reference

Title : Pseudomonas fluorescens CHA0 produces enantio-pyochelin, the optical antipode of the Pseudomonas aeruginosa siderophore pyochelin - Youard_2007_J.Biol.Chem_282_35546
Author(s) : Youard ZA , Mislin GL , Majcherczyk PA , Schalk IJ , Reimmann C
Ref : Journal of Biological Chemistry , 282 :35546 , 2007
Abstract :

The siderophore pyochelin is made by a thiotemplate mechanism from salicylate and two molecules of cysteine. In Pseudomonas aeruginosa, the first cysteine residue is converted to its D-isoform during thiazoline ring formation whereas the second cysteine remains in its L-configuration, thus determining the stereochemistry of the two interconvertible pyochelin diastereoisomers as 4'R, 2''R, 4''R (pyochelin I) and 4'R, 2''S, 4''R (pyochelin II). Pseudomonas fluorescens CHA0 was found to make a different stereoisomeric mixture, which promoted growth under iron limitation in strain CHA0 and induced the expression of its biosynthetic genes, but was not recognized as a siderophore and signaling molecule by P. aeruginosa. Reciprocally, pyochelin promoted growth and induced pyochelin gene expression in P. aeruginosa, but was not functional in P. fluorescens. The structure of the CHA0 siderophore was determined by mass spectrometry, thin-layer chromatography, NMR, polarimetry, and chiral HPLC as enantio-pyochelin, the optical antipode of the P. aeruginosa siderophore pyochelin. Enantio-pyochelin was chemically synthesized and confirmed to be active in CHA0. Its potential biosynthetic pathway in CHA0 is discussed.

PubMedSearch : Youard_2007_J.Biol.Chem_282_35546
PubMedID: 17938167
Gene_locus related to this paper: psef5-q4kay8

Related information

Gene_locus psef5-q4kay8

Citations formats

Youard ZA, Mislin GL, Majcherczyk PA, Schalk IJ, Reimmann C (2007)
Pseudomonas fluorescens CHA0 produces enantio-pyochelin, the optical antipode of the Pseudomonas aeruginosa siderophore pyochelin
Journal of Biological Chemistry 282 :35546

Youard ZA, Mislin GL, Majcherczyk PA, Schalk IJ, Reimmann C (2007)
Journal of Biological Chemistry 282 :35546