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  4. Comprehensive proteome analysis of Mycobacterium ulcerans and quantitative comparison of mycolactone biosynthesis
 
research article

Comprehensive proteome analysis of Mycobacterium ulcerans and quantitative comparison of mycolactone biosynthesis

Tafelmeyer, Petra
•
Laurent, Christine
•
Lenormand, Pascal
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2008
Proteomics

Mycobacterium ulcerans is the causative agent of Buruli ulcer, a rapidly emerging human disease in which mycolactone, a cytotoxic and immunosuppressive macrocyclic polyketide, is responsible for massive skin destruction. The genome sequencing of M. ulcerans has recently been accomplished (http://genolist.pasteur.fr/BuruList/) enabling the first proteome study of this important human pathogen. Here, we present a comprehensive proteome analysis of different subcellular fractions and culture supernatant of in vitro grown M. ulcerans. By a combination of gel-based and gel-free techniques for protein and peptide separation with subsequent analysis by MS, we identified 1074 different proteins, corresponding to 25% of the protein-coding DNA sequence. Interestingly, new information was obtained about central metabolism and lipid biosynthesis, and as many as 192 conserved hypothetical proteins were found. Comparative analysis of the wild-type strain and an isogenic mycolactone-deficient mutant, by 2-DE and iTRAQ labeling of the cytoplasmic fraction, revealed differences in the expression profiles of proteins involved in lipid metabolism and information pathways, as well as stress responses.

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Type
research article
DOI
10.1002/pmic.200701018
Web of Science ID

WOS:000258503400014

PubMed ID

18615429

Author(s)
Tafelmeyer, Petra
Laurent, Christine
Lenormand, Pascal
Rousselle, Jean-Claude
Marsollier, Laurent
Reysset, Gilles
Zhang, Runxuan
Sickmann, Albert
Stinear, Timothy P
Namane, Abdelkader
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Date Issued

2008

Published in
Proteomics
Volume

8

Issue

15

Start page

3124

End page

38

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPCOL  
Available on Infoscience
September 7, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/53103
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