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Convergence of two global regulators to coordinate expression of essential virulence determinants of Mycobacterium tuberculosis

DIR@IMTECH: CSIR-Institute of Microbial Technology

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Title Convergence of two global regulators to coordinate expression of essential virulence determinants of Mycobacterium tuberculosis
 
Creator Khan, Hina
Paul, Partha
Sevalkar, Ritesh Rajesh
Kachhap, Sangita
Singh, Balvinder
Sarkar, Dibyendu
 
Subject QR Microbiology
 
Description Cyclic AMP (cAMP) is known to function as a global regulator of Mycobacterium tuberculosis gene expression. Sequence-based transcriptomic profiling identified the mycobacterial regulon controlled by the cAMP receptor protein, CRP. In this study, we identified a new subset of CRP-associated genes including virulence determinants which are also under the control of a major regulator, PhoP. Our results suggest that PhoP as a DNA binding transcription factor, impacts expression of these genes, and phosphorylated PhoP promotes CRP recruitment at the target promoters. Further, we uncover a distinct regulatory mechanism showing that activation of these genes requires direct recruitment of both PhoP and CRP at their target promoters. The most fundamental biological insight is derived from the inhibition of CRP binding at the regulatory regions in a PhoP-deleted strain owing to CRP-PhoP protein-protein interactions. Based on these results, a model is proposed suggesting how CRP and PhoP function as co-activators of the essential pathogenic determinants. Taken together, these results uncover a novel mode of regulation where a complex of two interacting virulence factors impact expression of virulence determinants. These results have significant implications on TB pathogenesis.
 
Publisher eLife
 
Date 2022-11-09
 
Type Article
PeerReviewed
 
Relation https://elifesciences.org/articles/80965
http://crdd.osdd.net/open/3040/
 
Identifier Khan, Hina and Paul, Partha and Sevalkar, Ritesh Rajesh and Kachhap, Sangita and Singh, Balvinder and Sarkar, Dibyendu (2022) Convergence of two global regulators to coordinate expression of essential virulence determinants of Mycobacterium tuberculosis. ELIFE, 11.