Metabolomics

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Generation and characterization of thiol-deficient Mycobacterium tuberculosis mutants


ABSTRACT: Mycothiol (MSH) and ergothioneine (ERG) are thiols able to compensate for each other to protect mycobacteria such as Mycobacterium smegmatis against oxidative stress. Gamma-glutamylcysteine (GGC), another thiol and an intermediate in ERG biosynthesis has detoxification abilities. Five enzymes are involved in ERG biosynthesis, namely EgtA, EgtB, EgtC, EgtD and EgtE. The role of these enzymes in the production of ERG had been unclear. On the other hand, the enzyme MshA is known to be essential for MSH biosynthesis. In this manuscript, we describe the raw data of the generation and characterization of Mycobacterium tuberculosis (M.tb) mutants harbouring a deletion of the gene coding for each of these enzymes, and the raw data of the phenotypic characterization of the obtained thiol-deficient M.tb mutants. Through a high throughput screening approach, compounds not previously used in a tuberculosis (TB) regimen were identified. Raw data depicting the effect of these compounds on the generated thiol-deficient M.tb mutants, on the production of reactive oxygen species (ROS) and thiols in the M.tb wild type strain are described in this study.

INSTRUMENT(S): Liquid Chromatography Tandem MS (LC-MS/MS)

SUBMITTER: CARINE SAO 

PROVIDER: MTBLS661 | MetaboLights | 2018-07-05

REPOSITORIES: MetaboLights

Dataset's files

Source:
Action DRS
MTBLS661 Other
FILES Other
a_MTBLS661_thiols-mycobacteria_mass_spectrometry.txt Txt
i_Investigation.txt Txt
m_MTBLS661_thiols-mycobacteria_mass_spectrometry_v2_maf.tsv Tabular
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Publications

Generation and characterization of thiol-deficient Mycobacterium tuberculosis mutants.

Sao Emani C C   Williams M J MJ   Van Helden P D PD   Taylor M J C MJC   Carolis C C   Wiid I J IJ   Baker B B  

Scientific data 20180925


Mycothiol (MSH) and ergothioneine (ERG) are thiols able to compensate for each other to protect mycobacteria against oxidative stress. Gamma-glutamylcysteine (GGC), another thiol and an intermediate in ERG biosynthesis has detoxification abilities. Five enzymes are involved in ERG biosynthesis, namely EgtA, EgtB, EgtC, EgtD and EgtE. The role of these enzymes in the production of ERG had been unclear. On the other hand, the enzyme MshA is known to be essential for MSH biosynthesis. In this manus  ...[more]

Publication: 1/3

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