Functional insights into Mycobacterium tuberculosis DevR-dependent transcriptional machinery utilizing Escherichia coli.


Journal

The Biochemical journal
ISSN: 1470-8728
Titre abrégé: Biochem J
Pays: England
ID NLM: 2984726R

Informations de publication

Date de publication:
27 08 2021
Historique:
received: 20 04 2021
revised: 02 08 2021
accepted: 05 08 2021
pubmed: 6 8 2021
medline: 30 11 2021
entrez: 5 8 2021
Statut: ppublish

Résumé

DevR/DosR response regulator is believed to participate in virulence, dormancy adaptation and antibiotic tolerance mechanisms of Mycobacterium tuberculosis by regulating the expression of the dormancy regulon. We have previously shown that the interaction of DevR with RNA polymerase is essential for the expression of DevR-regulated genes. Here, we developed a M. tuberculosis-specific in vivo transcription system to enrich our understanding of DevR-RNA polymerase interaction. This in vivo assay involves co-transforming E. coli with two plasmids that express α, β, β' and σA subunits of M. tuberculosis RNA polymerase and a third plasmid that harbors a DevR expression cassette and a GFP reporter gene under the DevR-regulated fdxA promoter. We show that DevR-dependent transcription is sponsored exclusively by M. tuberculosis RNA polymerase and regulated by α and σA subunits of M. tuberculosis RNA polymerase. Using this E. coli triple plasmid system to express mutant variants of M. tuberculosis RNA polymerase, we identified E280 residue in C-terminal domain of α and K513 and R515 residues of σA to participate in DevR-dependent transcription. In silico modeling of a ternary complex of DevR, σA domain 4 and fdxA promoter suggest an interaction of Q505, R515 and K513 residues of σA with E178 and D172 residues of DevR and E471 of σA, respectively. These findings provide us with new insights into the interactions between DevR and RNA polymerase of M. tuberculosis which can be targeted for intercepting DevR function. Finally, we demonstrate the utility of this system for screening of anti-DevR compounds.

Identifiants

pubmed: 34350952
pii: 229456
doi: 10.1042/BCJ20210268
doi:

Substances chimiques

Bacterial Proteins 0
DNA-Binding Proteins 0
DosR protein, Mycobacterium tuberculosis 0
DNA 9007-49-2

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

3079-3098

Informations de copyright

© 2021 The Author(s). Published by Portland Press Limited on behalf of the Biochemical Society.

Auteurs

Saurabh Sharma (S)

Department of Biotechnology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, India.

Ramesh Kumar (R)

Department of Biotechnology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, India.

Ayushi Jain (A)

Department of Biotechnology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, India.

Manoj Kumar (M)

Department of Biophysics, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, India.

Rahul Gauttam (R)

Department of Biotechnology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, India.

Rajdeep Banerjee (R)

Department of Chemistry, Bose Institute, Kolkata, India.

Jayanta Mukhopadhyay (J)

Department of Chemistry, Bose Institute, Kolkata, India.

Jaya Sivaswami Tyagi (JS)

Department of Biotechnology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, India.

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Classifications MeSH